SlideShare una empresa de Scribd logo
1 de 31
Sean Carroll, Caltech
Quantum Field Theory
and the
Limits of Knowledge
Two claims:
1. The laws of physics underlying everyday life
are completely known.
2. The structure of quantum field theory provides
a warrant for claim 1.
“Laws of physics underlying everyday life”
= The Core Theory
• Quantum field theory in a
4-dimensional spacetime.
• Matter (fermions): quarks,leptons.
• Strong, weak, electromagnetic forces.
• Gravitation = general relativity.
• Higgs field.
Long history of embarrassingly premature triumphalism.
“[We are] probably nearing the limit of all we can know
about astronomy.” – Simon Newcomb, 1888
“The more important fundamental laws and facts of
physical science have all been discovered.”
– Albert Michelson, 1894
“Physics as we know it will be over in six months.”
– Max Born, 1928
There is a 50% chance that “we would find a complete
unified theory of everything by the end of the century.”
– Stephen Hawking, 1980
Perfectly obvious but necessary caveats
We’re nowhere close to understanding the fundamental
theory of everything.
We don’t understand the non-everyday: dark matter,
quantum gravity, the Big Bang…
We don’t fully understand macroscopic aggregations:
condensed matter, chemistry, biology, economics…
Quantum mechanics or quantum field theory could
always be wrong.
Known particles/forces,
general relativity
(Core theory)
Dark matter/energy,
new particles/forces,
hidden sectors
Underlying reality
(theory of everything)
Higher-level
macro-phenomena
of everyday life
Astrophysics,
cosmology
The Core Theory in more detail:
Quantum Mechanics
Think of “configurations,”
e.g. the location x of a particle.
Assign a complex number to
every possible configuration.
That describes a quantum state: a “wave function” Ψ(x)
that lives in a very-high-dimensional Hilbert space.
Schrödinger evolution equation:
x
x
Ψ(x)
Measurements in Quantum Mechanics
But we don’t “see” the wave function.
Measurements return some specific value of the
configuration (or other observable).
Probability of measurement outcome = |wave function|2
.
After measurement, wave function “collapses” (becomes
suddenly concentrated on observed outcome).
Seems absurd. But – good enough to successfully
predict the outcome of every experiment ever done.
(Some) Observables are Quantized
Standard example: Simple Harmonic Oscillator.
Particle moving in a potential ,
where x is the position and ω is the frequency.
Energy is quantized
into discrete levels:
Quantum Field Theory
QFT is not a successor/alternative to QM; it’s just
a particular QM model, with a particular Hamiltonian.
Namely: “configurations” are “values of (relativistic)
fields throughout space.” E.g. φ(x).
The quantum state (wave function) is a complex
amplitude for each possible field configuration, Ψ[φ(x)].
Examples: electromagnetic field, electron field,
top quark field, gravitational field (metric), etc.
Particles from fields
Each mode acts like a simple harmonic oscillator!
Energy levels = number of particles.
Wavelength = 1/momentum.
Indeed, relativity+QM+particles QFT.
Decompose oscillating field into a sum of “modes”
of different wavelengths (Fourier transform):
= +
+ …+
Interactions
Particle interactions are encoded in Feynman diagrams.
= +
+ + …
Adding up virtual particles
Every particle has a
momentum, and total
is conserved at
each vertex.
When there are loops,
momentum “flowing
through the loop” (q)
is arbitrary, and gets
summed over.
Result is often infinite.
don’t need to worry
about what happens here
Ken Wilson: organize QFT by energy/length scale
Remember: energy & momentum ~ 1/(wavelength).
IR
UV
Λ
(“cutoff”
energy
scale)
long
wavelengths/
low energies
short
wavelengths/
high energies
Think of your theory as only describing energies below
the ultraviolet cutoff scale Λ.
I.e., only include wavelengths longer than 1/Λ.
Result is an effective field theory below Λ.
Effective Field Theory
All diagrams with N legs contribute to an interaction
term (in Lagrangian) between N particles.
There are an infinite number of terms in
EFT equations of motion…
φ4
φ8
φ6
Both the field φ and the cutoff Λ have units of energy,
and the Lagrangian governing interactions is (energy)4
.
So schematically we have:
Higher-order terms are negligible at low energy (<< Λ).
Only a finite number of relevant/marginal interactions.
… but only a finite number of terms matter
“relevant” “marginal” “irrelevant”
At energies below Λ, an EFT can be a complete theory.
Above Λ, new phenomena can kick in.
E.g. Fermi theory of weak interactions Standard Model.
Effective field theories tell us their regime of applicability:
below the ultraviolet cutoff Λ.
Fermi coupling
“We haven’t quantized gravity,” but I’m treating
gravity like a perfectly ordinary effective field theory.
Because it is – as long as gravity is weak (far from
black holes, Big Bang, etc.).
In terms of curvature parameter R, interactions look like
Here on Earth, 1st
term is 1050
times bigger than 2nd
.
Quantum Gravity?
A given effective field theory with cutoff Λ could have
many “ultraviolet completions” at higher energies.
That’s why it’s hard to do experiments relevant to
quantum gravity: we expect Λ ~ Eplanck ~ 1015
ELHC.
Multiple realizability
loop quantum gravity string theory dynamical triangulations
Known particles/forces,
general relativity
(Core theory)
Dark matter/energy,
new particles/forces,
hidden sectors
Underlying reality
(theory of everything)
Higher-level
emergent phenomena
of everyday life
Astrophysics,
cosmology
Underlying physics only influences us via Core Theory.
What about new particles/forces?
strongly
interacting
light/
long range/
low energy
heavy/
short range/
high energy
weakly
interacting
accessible
inaccessible
known
knowns
known
unknowns
Unknown unknowns = violations of QFT itself.
QFT puts very tight
constraints on new phenomena.
time
new particle
new
interaction
If a new particle can
interact with ordinary
particles:
Then that particle
can be created in
high-energy collisions.
“Crossing symmetry.”
Constraints on new particles
As-yet-undiscovered
particles must be either:
1. very weakly interacting,
2. too heavy to create, or
3. too short-lived to detect.
In any of those cases, the new particle would
be irrelevant to our everyday lives.
To be relevant to everyday physics, any new forces
must interact with protons, neutrons, electrons,
and/or photons.
Experiments are ongoing (torsion balances) to
search for new, weak, long-range forces.
Two ways to hide:
1. weak interactions, or
2. very short ranges.
Constraints on new forces
Strength(relativetogravity)
Range [Long et al. 2003; Antoniadis 2003]
Experimental limits on new forces
Ruled Out
Allowed
new
gravitational-
strength
force
(10-36
E&M)
Known particles/forces,
general relativity
(Core theory)
Dark matter/energy,
new particles/forces,
hidden sectors
Underlying reality
(theory of everything)
Higher-level
emergent phenomena
of everyday life
Astrophysics,
cosmology
New particles/forces are too heavy/weak to influence us.
gravity
other forces matter Higgs
quantum mechanics spacetime
Punchline:
the laws of physics underlying everyday experience.
Other phenomena are too massive or weakly-coupled to
have any impact on the particles of which we are made.
• Astrology is not correct.
Implications of the Core Theory
• You can’t bend spoons with your mind.
• The soul does not survive the body.
3. Accessible deviations from textbook QM.
(Hidden variables, spontaneous/induced collapse.)
Loopholes?
2. Breakdown of QFT itself. E.g. non-local constraints/
interactions from quantum gravity (holography).
1. New forces with environment-dependent couplings.
4. Divine intervention.
Known particles/forces,
general relativity
(Core theory)
Dark matter/energy,
new particles/forces,
hidden sectors
Underlying reality
(theory of everything)
Higher-level
emergent phenomena
of everyday life
Astrophysics,
cosmology

Más contenido relacionado

La actualidad más candente

Mathematical Formulation of Quantum Mechanics
Mathematical Formulation of Quantum Mechanics Mathematical Formulation of Quantum Mechanics
Mathematical Formulation of Quantum Mechanics rbmaitri123
 
Quantum Mechanics Presentation
Quantum Mechanics PresentationQuantum Mechanics Presentation
Quantum Mechanics PresentationJasmine Wang
 
Introduction to quantum mechanics and schrodinger equation
Introduction to quantum mechanics and schrodinger equationIntroduction to quantum mechanics and schrodinger equation
Introduction to quantum mechanics and schrodinger equationGaurav Singh Gusain
 
Dark matter presentation
Dark matter presentationDark matter presentation
Dark matter presentationWAQAS INAM
 
The Past, Present and Future of Cosmology
The Past, Present and Future of Cosmology The Past, Present and Future of Cosmology
The Past, Present and Future of Cosmology DanielBaumann11
 
Standard model of particle physics
Standard model of particle physicsStandard model of particle physics
Standard model of particle physicsupvita pandey
 
Physics Final Presentation: Nuclear Physics
Physics Final Presentation: Nuclear PhysicsPhysics Final Presentation: Nuclear Physics
Physics Final Presentation: Nuclear PhysicsChris Wilson
 
To the point particle physics
To the point particle physicsTo the point particle physics
To the point particle physicsShahzada Khan
 
Applications of Quantum Entanglement Presentation
Applications of Quantum Entanglement PresentationApplications of Quantum Entanglement Presentation
Applications of Quantum Entanglement PresentationParis-Anne O'Shea
 
Foundation of geometrical optics
Foundation of geometrical opticsFoundation of geometrical optics
Foundation of geometrical opticsSolo Hermelin
 
Big bang theory and its proofs
Big bang theory and its proofsBig bang theory and its proofs
Big bang theory and its proofsmuktesh pillai
 
Quantum entanglement
Quantum entanglementQuantum entanglement
Quantum entanglementAKM666
 

La actualidad más candente (20)

Nuclear reaction
Nuclear reactionNuclear reaction
Nuclear reaction
 
Mathematical Formulation of Quantum Mechanics
Mathematical Formulation of Quantum Mechanics Mathematical Formulation of Quantum Mechanics
Mathematical Formulation of Quantum Mechanics
 
Quantum Mechanics Presentation
Quantum Mechanics PresentationQuantum Mechanics Presentation
Quantum Mechanics Presentation
 
Introduction to quantum mechanics and schrodinger equation
Introduction to quantum mechanics and schrodinger equationIntroduction to quantum mechanics and schrodinger equation
Introduction to quantum mechanics and schrodinger equation
 
Dark matter presentation
Dark matter presentationDark matter presentation
Dark matter presentation
 
The Past, Present and Future of Cosmology
The Past, Present and Future of Cosmology The Past, Present and Future of Cosmology
The Past, Present and Future of Cosmology
 
Standard model of particle physics
Standard model of particle physicsStandard model of particle physics
Standard model of particle physics
 
Part III - Quantum Mechanics
Part III - Quantum MechanicsPart III - Quantum Mechanics
Part III - Quantum Mechanics
 
String theory basics
String theory basicsString theory basics
String theory basics
 
Physics Final Presentation: Nuclear Physics
Physics Final Presentation: Nuclear PhysicsPhysics Final Presentation: Nuclear Physics
Physics Final Presentation: Nuclear Physics
 
Quantum mechanics
Quantum mechanicsQuantum mechanics
Quantum mechanics
 
The big band theory
The big band theoryThe big band theory
The big band theory
 
Quantum theory
Quantum theoryQuantum theory
Quantum theory
 
To the point particle physics
To the point particle physicsTo the point particle physics
To the point particle physics
 
Applications of Quantum Entanglement Presentation
Applications of Quantum Entanglement PresentationApplications of Quantum Entanglement Presentation
Applications of Quantum Entanglement Presentation
 
Foundation of geometrical optics
Foundation of geometrical opticsFoundation of geometrical optics
Foundation of geometrical optics
 
Big bang theory and its proofs
Big bang theory and its proofsBig bang theory and its proofs
Big bang theory and its proofs
 
EPR paradox
EPR paradoxEPR paradox
EPR paradox
 
NANO266 - Lecture 1 - Introduction to Quantum Mechanics
NANO266 - Lecture 1 - Introduction to Quantum MechanicsNANO266 - Lecture 1 - Introduction to Quantum Mechanics
NANO266 - Lecture 1 - Introduction to Quantum Mechanics
 
Quantum entanglement
Quantum entanglementQuantum entanglement
Quantum entanglement
 

Destacado

Gifford Lecture One: Cosmos, Time, Memory
Gifford Lecture One: Cosmos, Time, MemoryGifford Lecture One: Cosmos, Time, Memory
Gifford Lecture One: Cosmos, Time, MemorySean Carroll
 
What We (Don't) Know About the Beginning of the Universe
What We (Don't) Know About the Beginning of the UniverseWhat We (Don't) Know About the Beginning of the Universe
What We (Don't) Know About the Beginning of the UniverseSean Carroll
 
The Many Worlds of Quantum Mechanics
The Many Worlds of Quantum MechanicsThe Many Worlds of Quantum Mechanics
The Many Worlds of Quantum MechanicsSean Carroll
 
Purpose and the Universe
Purpose and the UniversePurpose and the Universe
Purpose and the UniverseSean Carroll
 
The Origin of the Universe and the Arrow of Time
The Origin of the Universe and the Arrow of TimeThe Origin of the Universe and the Arrow of Time
The Origin of the Universe and the Arrow of TimeSean Carroll
 
Periodontal probing and techniques
Periodontal probing and techniquesPeriodontal probing and techniques
Periodontal probing and techniquesDr John Kazim
 
Nonprofit Content Marketing - 2015 Benchmarks, Budgets and Trends - North Ame...
Nonprofit Content Marketing - 2015 Benchmarks, Budgets and Trends - North Ame...Nonprofit Content Marketing - 2015 Benchmarks, Budgets and Trends - North Ame...
Nonprofit Content Marketing - 2015 Benchmarks, Budgets and Trends - North Ame...Content Marketing Institute
 
Refraction
RefractionRefraction
Refractionmeikocat
 
4. heredity and evolution
4. heredity and evolution4. heredity and evolution
4. heredity and evolutionAbhay Goyal
 
Gear Cutting Presentation for Polytechnic College Students of India
Gear Cutting Presentation for Polytechnic College Students of IndiaGear Cutting Presentation for Polytechnic College Students of India
Gear Cutting Presentation for Polytechnic College Students of Indiakichu
 
Thai tech startup ecosystem report 2017
Thai tech startup ecosystem report 2017Thai tech startup ecosystem report 2017
Thai tech startup ecosystem report 2017Techsauce Media
 
Types of maintenance
Types of maintenanceTypes of maintenance
Types of maintenanceAbhik Rathod
 
Fmcg training modules-bfg
Fmcg training modules-bfgFmcg training modules-bfg
Fmcg training modules-bfgRomy Cagampan
 
Classroom Management Techniques
Classroom Management TechniquesClassroom Management Techniques
Classroom Management TechniquesBaita Sapad
 

Destacado (20)

Gifford Lecture One: Cosmos, Time, Memory
Gifford Lecture One: Cosmos, Time, MemoryGifford Lecture One: Cosmos, Time, Memory
Gifford Lecture One: Cosmos, Time, Memory
 
What We (Don't) Know About the Beginning of the Universe
What We (Don't) Know About the Beginning of the UniverseWhat We (Don't) Know About the Beginning of the Universe
What We (Don't) Know About the Beginning of the Universe
 
The Many Worlds of Quantum Mechanics
The Many Worlds of Quantum MechanicsThe Many Worlds of Quantum Mechanics
The Many Worlds of Quantum Mechanics
 
Purpose and the Universe
Purpose and the UniversePurpose and the Universe
Purpose and the Universe
 
The Origin of the Universe and the Arrow of Time
The Origin of the Universe and the Arrow of TimeThe Origin of the Universe and the Arrow of Time
The Origin of the Universe and the Arrow of Time
 
Periodontal probing and techniques
Periodontal probing and techniquesPeriodontal probing and techniques
Periodontal probing and techniques
 
Nonprofit Content Marketing - 2015 Benchmarks, Budgets and Trends - North Ame...
Nonprofit Content Marketing - 2015 Benchmarks, Budgets and Trends - North Ame...Nonprofit Content Marketing - 2015 Benchmarks, Budgets and Trends - North Ame...
Nonprofit Content Marketing - 2015 Benchmarks, Budgets and Trends - North Ame...
 
Refraction
RefractionRefraction
Refraction
 
MVNO Case
MVNO CaseMVNO Case
MVNO Case
 
4. heredity and evolution
4. heredity and evolution4. heredity and evolution
4. heredity and evolution
 
Against Space
Against SpaceAgainst Space
Against Space
 
Gear Cutting Presentation for Polytechnic College Students of India
Gear Cutting Presentation for Polytechnic College Students of IndiaGear Cutting Presentation for Polytechnic College Students of India
Gear Cutting Presentation for Polytechnic College Students of India
 
Thai tech startup ecosystem report 2017
Thai tech startup ecosystem report 2017Thai tech startup ecosystem report 2017
Thai tech startup ecosystem report 2017
 
Mri brain anatomy Dr Muhammad Bin Zulfiqar
Mri brain anatomy Dr Muhammad Bin ZulfiqarMri brain anatomy Dr Muhammad Bin Zulfiqar
Mri brain anatomy Dr Muhammad Bin Zulfiqar
 
Types of maintenance
Types of maintenanceTypes of maintenance
Types of maintenance
 
Real Estate Listing Presentation
Real Estate Listing PresentationReal Estate Listing Presentation
Real Estate Listing Presentation
 
Fmcg training modules-bfg
Fmcg training modules-bfgFmcg training modules-bfg
Fmcg training modules-bfg
 
Understanding DPDK
Understanding DPDKUnderstanding DPDK
Understanding DPDK
 
5000 Sat Words With Definitions
5000 Sat Words With Definitions5000 Sat Words With Definitions
5000 Sat Words With Definitions
 
Classroom Management Techniques
Classroom Management TechniquesClassroom Management Techniques
Classroom Management Techniques
 

Similar a Quantum Field Theory and the Limits of Knowledge

natsci1report (2007version)
natsci1report (2007version)natsci1report (2007version)
natsci1report (2007version)alezandria
 
Vasil Penchev. Gravity as entanglement, and entanglement as gravity
Vasil Penchev. Gravity as entanglement, and entanglement as gravityVasil Penchev. Gravity as entanglement, and entanglement as gravity
Vasil Penchev. Gravity as entanglement, and entanglement as gravityVasil Penchev
 
The Standard Model and the LHC in the Higgs Boson Era
The Standard Model and the LHC in the Higgs Boson EraThe Standard Model and the LHC in the Higgs Boson Era
The Standard Model and the LHC in the Higgs Boson Erajuanrojochacon
 
19_quantum [Autosaved].ppt
19_quantum [Autosaved].ppt19_quantum [Autosaved].ppt
19_quantum [Autosaved].pptVEERSHARMA35
 
Nanotechnology with Uncertanty principle
Nanotechnology with Uncertanty principle  Nanotechnology with Uncertanty principle
Nanotechnology with Uncertanty principle Samar Makarona
 
Ion trap quantum computation
Ion trap quantum computationIon trap quantum computation
Ion trap quantum computationGabriel O'Brien
 
Quantum Chemistry-Introduction - Unit-V.pdf
Quantum Chemistry-Introduction - Unit-V.pdfQuantum Chemistry-Introduction - Unit-V.pdf
Quantum Chemistry-Introduction - Unit-V.pdfKavitha251961
 
Quantum_Mechanics
Quantum_MechanicsQuantum_Mechanics
Quantum_MechanicsTejasvTomar
 
Heisgnberg principle, energy levels &amp; atomic spectra
Heisgnberg principle, energy levels &amp; atomic spectraHeisgnberg principle, energy levels &amp; atomic spectra
Heisgnberg principle, energy levels &amp; atomic spectraNoor Fatima
 
News from Quantum Gravity Phenomenology
News from Quantum Gravity PhenomenologyNews from Quantum Gravity Phenomenology
News from Quantum Gravity PhenomenologySabine Hossenfelder
 
The Phase Theory towards the Unification of the Forces of Nature the Heart Be...
The Phase Theory towards the Unification of the Forces of Nature the Heart Be...The Phase Theory towards the Unification of the Forces of Nature the Heart Be...
The Phase Theory towards the Unification of the Forces of Nature the Heart Be...IOSR Journals
 
BasicsofQM_Postulates.ppt
BasicsofQM_Postulates.pptBasicsofQM_Postulates.ppt
BasicsofQM_Postulates.pptSidPall
 
Basics of Quantum Mechanics: - Why Quantum Physics? -
Basics of Quantum Mechanics: - Why Quantum Physics? -Basics of Quantum Mechanics: - Why Quantum Physics? -
Basics of Quantum Mechanics: - Why Quantum Physics? -ShivangiVerma59
 
Quantum mechanics
Quantum mechanicsQuantum mechanics
Quantum mechanicshplap
 
natsci1report (compatibility mode)
natsci1report (compatibility mode)natsci1report (compatibility mode)
natsci1report (compatibility mode)alezandria
 
#SciChallenge2017 Elementary particles
#SciChallenge2017 Elementary particles #SciChallenge2017 Elementary particles
#SciChallenge2017 Elementary particles Barış Bayraktar
 
Grand unified theory
Grand unified theoryGrand unified theory
Grand unified theoryattique1960
 

Similar a Quantum Field Theory and the Limits of Knowledge (20)

natsci1report (2007version)
natsci1report (2007version)natsci1report (2007version)
natsci1report (2007version)
 
Vasil Penchev. Gravity as entanglement, and entanglement as gravity
Vasil Penchev. Gravity as entanglement, and entanglement as gravityVasil Penchev. Gravity as entanglement, and entanglement as gravity
Vasil Penchev. Gravity as entanglement, and entanglement as gravity
 
604 2441-1-pb
604 2441-1-pb604 2441-1-pb
604 2441-1-pb
 
The Standard Model and the LHC in the Higgs Boson Era
The Standard Model and the LHC in the Higgs Boson EraThe Standard Model and the LHC in the Higgs Boson Era
The Standard Model and the LHC in the Higgs Boson Era
 
19_quantum [Autosaved].ppt
19_quantum [Autosaved].ppt19_quantum [Autosaved].ppt
19_quantum [Autosaved].ppt
 
Nanotechnology with Uncertanty principle
Nanotechnology with Uncertanty principle  Nanotechnology with Uncertanty principle
Nanotechnology with Uncertanty principle
 
Ion trap quantum computation
Ion trap quantum computationIon trap quantum computation
Ion trap quantum computation
 
Quantum Chemistry-Introduction - Unit-V.pdf
Quantum Chemistry-Introduction - Unit-V.pdfQuantum Chemistry-Introduction - Unit-V.pdf
Quantum Chemistry-Introduction - Unit-V.pdf
 
SFT_preprint-EN_2_col.pdf
SFT_preprint-EN_2_col.pdfSFT_preprint-EN_2_col.pdf
SFT_preprint-EN_2_col.pdf
 
Quantum_Mechanics
Quantum_MechanicsQuantum_Mechanics
Quantum_Mechanics
 
Quantum physics
Quantum physicsQuantum physics
Quantum physics
 
Heisgnberg principle, energy levels &amp; atomic spectra
Heisgnberg principle, energy levels &amp; atomic spectraHeisgnberg principle, energy levels &amp; atomic spectra
Heisgnberg principle, energy levels &amp; atomic spectra
 
News from Quantum Gravity Phenomenology
News from Quantum Gravity PhenomenologyNews from Quantum Gravity Phenomenology
News from Quantum Gravity Phenomenology
 
The Phase Theory towards the Unification of the Forces of Nature the Heart Be...
The Phase Theory towards the Unification of the Forces of Nature the Heart Be...The Phase Theory towards the Unification of the Forces of Nature the Heart Be...
The Phase Theory towards the Unification of the Forces of Nature the Heart Be...
 
BasicsofQM_Postulates.ppt
BasicsofQM_Postulates.pptBasicsofQM_Postulates.ppt
BasicsofQM_Postulates.ppt
 
Basics of Quantum Mechanics: - Why Quantum Physics? -
Basics of Quantum Mechanics: - Why Quantum Physics? -Basics of Quantum Mechanics: - Why Quantum Physics? -
Basics of Quantum Mechanics: - Why Quantum Physics? -
 
Quantum mechanics
Quantum mechanicsQuantum mechanics
Quantum mechanics
 
natsci1report (compatibility mode)
natsci1report (compatibility mode)natsci1report (compatibility mode)
natsci1report (compatibility mode)
 
#SciChallenge2017 Elementary particles
#SciChallenge2017 Elementary particles #SciChallenge2017 Elementary particles
#SciChallenge2017 Elementary particles
 
Grand unified theory
Grand unified theoryGrand unified theory
Grand unified theory
 

Último

STOPPED FLOW METHOD & APPLICATION MURUGAVENI B.pptx
STOPPED FLOW METHOD & APPLICATION MURUGAVENI B.pptxSTOPPED FLOW METHOD & APPLICATION MURUGAVENI B.pptx
STOPPED FLOW METHOD & APPLICATION MURUGAVENI B.pptxMurugaveni B
 
Best Call Girls In Sector 29 Gurgaon❤️8860477959 EscorTs Service In 24/7 Delh...
Best Call Girls In Sector 29 Gurgaon❤️8860477959 EscorTs Service In 24/7 Delh...Best Call Girls In Sector 29 Gurgaon❤️8860477959 EscorTs Service In 24/7 Delh...
Best Call Girls In Sector 29 Gurgaon❤️8860477959 EscorTs Service In 24/7 Delh...lizamodels9
 
Bioteknologi kelas 10 kumer smapsa .pptx
Bioteknologi kelas 10 kumer smapsa .pptxBioteknologi kelas 10 kumer smapsa .pptx
Bioteknologi kelas 10 kumer smapsa .pptx023NiWayanAnggiSriWa
 
Base editing, prime editing, Cas13 & RNA editing and organelle base editing
Base editing, prime editing, Cas13 & RNA editing and organelle base editingBase editing, prime editing, Cas13 & RNA editing and organelle base editing
Base editing, prime editing, Cas13 & RNA editing and organelle base editingNetHelix
 
User Guide: Pulsar™ Weather Station (Columbia Weather Systems)
User Guide: Pulsar™ Weather Station (Columbia Weather Systems)User Guide: Pulsar™ Weather Station (Columbia Weather Systems)
User Guide: Pulsar™ Weather Station (Columbia Weather Systems)Columbia Weather Systems
 
Forensic limnology of diatoms by Sanjai.pptx
Forensic limnology of diatoms by Sanjai.pptxForensic limnology of diatoms by Sanjai.pptx
Forensic limnology of diatoms by Sanjai.pptxkumarsanjai28051
 
REVISTA DE BIOLOGIA E CIÊNCIAS DA TERRA ISSN 1519-5228 - Artigo_Bioterra_V24_...
REVISTA DE BIOLOGIA E CIÊNCIAS DA TERRA ISSN 1519-5228 - Artigo_Bioterra_V24_...REVISTA DE BIOLOGIA E CIÊNCIAS DA TERRA ISSN 1519-5228 - Artigo_Bioterra_V24_...
REVISTA DE BIOLOGIA E CIÊNCIAS DA TERRA ISSN 1519-5228 - Artigo_Bioterra_V24_...Universidade Federal de Sergipe - UFS
 
Pests of safflower_Binomics_Identification_Dr.UPR.pdf
Pests of safflower_Binomics_Identification_Dr.UPR.pdfPests of safflower_Binomics_Identification_Dr.UPR.pdf
Pests of safflower_Binomics_Identification_Dr.UPR.pdfPirithiRaju
 
basic entomology with insect anatomy and taxonomy
basic entomology with insect anatomy and taxonomybasic entomology with insect anatomy and taxonomy
basic entomology with insect anatomy and taxonomyDrAnita Sharma
 
Pests of jatropha_Bionomics_identification_Dr.UPR.pdf
Pests of jatropha_Bionomics_identification_Dr.UPR.pdfPests of jatropha_Bionomics_identification_Dr.UPR.pdf
Pests of jatropha_Bionomics_identification_Dr.UPR.pdfPirithiRaju
 
LIGHT-PHENOMENA-BY-CABUALDIONALDOPANOGANCADIENTE-CONDEZA (1).pptx
LIGHT-PHENOMENA-BY-CABUALDIONALDOPANOGANCADIENTE-CONDEZA (1).pptxLIGHT-PHENOMENA-BY-CABUALDIONALDOPANOGANCADIENTE-CONDEZA (1).pptx
LIGHT-PHENOMENA-BY-CABUALDIONALDOPANOGANCADIENTE-CONDEZA (1).pptxmalonesandreagweneth
 
OECD bibliometric indicators: Selected highlights, April 2024
OECD bibliometric indicators: Selected highlights, April 2024OECD bibliometric indicators: Selected highlights, April 2024
OECD bibliometric indicators: Selected highlights, April 2024innovationoecd
 
THE ROLE OF PHARMACOGNOSY IN TRADITIONAL AND MODERN SYSTEM OF MEDICINE.pptx
THE ROLE OF PHARMACOGNOSY IN TRADITIONAL AND MODERN SYSTEM OF MEDICINE.pptxTHE ROLE OF PHARMACOGNOSY IN TRADITIONAL AND MODERN SYSTEM OF MEDICINE.pptx
THE ROLE OF PHARMACOGNOSY IN TRADITIONAL AND MODERN SYSTEM OF MEDICINE.pptxNandakishor Bhaurao Deshmukh
 
(9818099198) Call Girls In Noida Sector 14 (NOIDA ESCORTS)
(9818099198) Call Girls In Noida Sector 14 (NOIDA ESCORTS)(9818099198) Call Girls In Noida Sector 14 (NOIDA ESCORTS)
(9818099198) Call Girls In Noida Sector 14 (NOIDA ESCORTS)riyaescorts54
 
Carbon Dioxide Capture and Storage (CSS)
Carbon Dioxide Capture and Storage (CSS)Carbon Dioxide Capture and Storage (CSS)
Carbon Dioxide Capture and Storage (CSS)Tamer Koksalan, PhD
 
The dark energy paradox leads to a new structure of spacetime.pptx
The dark energy paradox leads to a new structure of spacetime.pptxThe dark energy paradox leads to a new structure of spacetime.pptx
The dark energy paradox leads to a new structure of spacetime.pptxEran Akiva Sinbar
 
GenBio2 - Lesson 1 - Introduction to Genetics.pptx
GenBio2 - Lesson 1 - Introduction to Genetics.pptxGenBio2 - Lesson 1 - Introduction to Genetics.pptx
GenBio2 - Lesson 1 - Introduction to Genetics.pptxBerniceCayabyab1
 
Davis plaque method.pptx recombinant DNA technology
Davis plaque method.pptx recombinant DNA technologyDavis plaque method.pptx recombinant DNA technology
Davis plaque method.pptx recombinant DNA technologycaarthichand2003
 
User Guide: Capricorn FLX™ Weather Station
User Guide: Capricorn FLX™ Weather StationUser Guide: Capricorn FLX™ Weather Station
User Guide: Capricorn FLX™ Weather StationColumbia Weather Systems
 

Último (20)

STOPPED FLOW METHOD & APPLICATION MURUGAVENI B.pptx
STOPPED FLOW METHOD & APPLICATION MURUGAVENI B.pptxSTOPPED FLOW METHOD & APPLICATION MURUGAVENI B.pptx
STOPPED FLOW METHOD & APPLICATION MURUGAVENI B.pptx
 
Best Call Girls In Sector 29 Gurgaon❤️8860477959 EscorTs Service In 24/7 Delh...
Best Call Girls In Sector 29 Gurgaon❤️8860477959 EscorTs Service In 24/7 Delh...Best Call Girls In Sector 29 Gurgaon❤️8860477959 EscorTs Service In 24/7 Delh...
Best Call Girls In Sector 29 Gurgaon❤️8860477959 EscorTs Service In 24/7 Delh...
 
Bioteknologi kelas 10 kumer smapsa .pptx
Bioteknologi kelas 10 kumer smapsa .pptxBioteknologi kelas 10 kumer smapsa .pptx
Bioteknologi kelas 10 kumer smapsa .pptx
 
Base editing, prime editing, Cas13 & RNA editing and organelle base editing
Base editing, prime editing, Cas13 & RNA editing and organelle base editingBase editing, prime editing, Cas13 & RNA editing and organelle base editing
Base editing, prime editing, Cas13 & RNA editing and organelle base editing
 
User Guide: Pulsar™ Weather Station (Columbia Weather Systems)
User Guide: Pulsar™ Weather Station (Columbia Weather Systems)User Guide: Pulsar™ Weather Station (Columbia Weather Systems)
User Guide: Pulsar™ Weather Station (Columbia Weather Systems)
 
Hot Sexy call girls in Moti Nagar,🔝 9953056974 🔝 escort Service
Hot Sexy call girls in  Moti Nagar,🔝 9953056974 🔝 escort ServiceHot Sexy call girls in  Moti Nagar,🔝 9953056974 🔝 escort Service
Hot Sexy call girls in Moti Nagar,🔝 9953056974 🔝 escort Service
 
Forensic limnology of diatoms by Sanjai.pptx
Forensic limnology of diatoms by Sanjai.pptxForensic limnology of diatoms by Sanjai.pptx
Forensic limnology of diatoms by Sanjai.pptx
 
REVISTA DE BIOLOGIA E CIÊNCIAS DA TERRA ISSN 1519-5228 - Artigo_Bioterra_V24_...
REVISTA DE BIOLOGIA E CIÊNCIAS DA TERRA ISSN 1519-5228 - Artigo_Bioterra_V24_...REVISTA DE BIOLOGIA E CIÊNCIAS DA TERRA ISSN 1519-5228 - Artigo_Bioterra_V24_...
REVISTA DE BIOLOGIA E CIÊNCIAS DA TERRA ISSN 1519-5228 - Artigo_Bioterra_V24_...
 
Pests of safflower_Binomics_Identification_Dr.UPR.pdf
Pests of safflower_Binomics_Identification_Dr.UPR.pdfPests of safflower_Binomics_Identification_Dr.UPR.pdf
Pests of safflower_Binomics_Identification_Dr.UPR.pdf
 
basic entomology with insect anatomy and taxonomy
basic entomology with insect anatomy and taxonomybasic entomology with insect anatomy and taxonomy
basic entomology with insect anatomy and taxonomy
 
Pests of jatropha_Bionomics_identification_Dr.UPR.pdf
Pests of jatropha_Bionomics_identification_Dr.UPR.pdfPests of jatropha_Bionomics_identification_Dr.UPR.pdf
Pests of jatropha_Bionomics_identification_Dr.UPR.pdf
 
LIGHT-PHENOMENA-BY-CABUALDIONALDOPANOGANCADIENTE-CONDEZA (1).pptx
LIGHT-PHENOMENA-BY-CABUALDIONALDOPANOGANCADIENTE-CONDEZA (1).pptxLIGHT-PHENOMENA-BY-CABUALDIONALDOPANOGANCADIENTE-CONDEZA (1).pptx
LIGHT-PHENOMENA-BY-CABUALDIONALDOPANOGANCADIENTE-CONDEZA (1).pptx
 
OECD bibliometric indicators: Selected highlights, April 2024
OECD bibliometric indicators: Selected highlights, April 2024OECD bibliometric indicators: Selected highlights, April 2024
OECD bibliometric indicators: Selected highlights, April 2024
 
THE ROLE OF PHARMACOGNOSY IN TRADITIONAL AND MODERN SYSTEM OF MEDICINE.pptx
THE ROLE OF PHARMACOGNOSY IN TRADITIONAL AND MODERN SYSTEM OF MEDICINE.pptxTHE ROLE OF PHARMACOGNOSY IN TRADITIONAL AND MODERN SYSTEM OF MEDICINE.pptx
THE ROLE OF PHARMACOGNOSY IN TRADITIONAL AND MODERN SYSTEM OF MEDICINE.pptx
 
(9818099198) Call Girls In Noida Sector 14 (NOIDA ESCORTS)
(9818099198) Call Girls In Noida Sector 14 (NOIDA ESCORTS)(9818099198) Call Girls In Noida Sector 14 (NOIDA ESCORTS)
(9818099198) Call Girls In Noida Sector 14 (NOIDA ESCORTS)
 
Carbon Dioxide Capture and Storage (CSS)
Carbon Dioxide Capture and Storage (CSS)Carbon Dioxide Capture and Storage (CSS)
Carbon Dioxide Capture and Storage (CSS)
 
The dark energy paradox leads to a new structure of spacetime.pptx
The dark energy paradox leads to a new structure of spacetime.pptxThe dark energy paradox leads to a new structure of spacetime.pptx
The dark energy paradox leads to a new structure of spacetime.pptx
 
GenBio2 - Lesson 1 - Introduction to Genetics.pptx
GenBio2 - Lesson 1 - Introduction to Genetics.pptxGenBio2 - Lesson 1 - Introduction to Genetics.pptx
GenBio2 - Lesson 1 - Introduction to Genetics.pptx
 
Davis plaque method.pptx recombinant DNA technology
Davis plaque method.pptx recombinant DNA technologyDavis plaque method.pptx recombinant DNA technology
Davis plaque method.pptx recombinant DNA technology
 
User Guide: Capricorn FLX™ Weather Station
User Guide: Capricorn FLX™ Weather StationUser Guide: Capricorn FLX™ Weather Station
User Guide: Capricorn FLX™ Weather Station
 

Quantum Field Theory and the Limits of Knowledge

  • 1. Sean Carroll, Caltech Quantum Field Theory and the Limits of Knowledge
  • 2. Two claims: 1. The laws of physics underlying everyday life are completely known. 2. The structure of quantum field theory provides a warrant for claim 1.
  • 3. “Laws of physics underlying everyday life” = The Core Theory • Quantum field theory in a 4-dimensional spacetime. • Matter (fermions): quarks,leptons. • Strong, weak, electromagnetic forces. • Gravitation = general relativity. • Higgs field.
  • 4. Long history of embarrassingly premature triumphalism. “[We are] probably nearing the limit of all we can know about astronomy.” – Simon Newcomb, 1888 “The more important fundamental laws and facts of physical science have all been discovered.” – Albert Michelson, 1894 “Physics as we know it will be over in six months.” – Max Born, 1928 There is a 50% chance that “we would find a complete unified theory of everything by the end of the century.” – Stephen Hawking, 1980
  • 5. Perfectly obvious but necessary caveats We’re nowhere close to understanding the fundamental theory of everything. We don’t understand the non-everyday: dark matter, quantum gravity, the Big Bang… We don’t fully understand macroscopic aggregations: condensed matter, chemistry, biology, economics… Quantum mechanics or quantum field theory could always be wrong.
  • 6. Known particles/forces, general relativity (Core theory) Dark matter/energy, new particles/forces, hidden sectors Underlying reality (theory of everything) Higher-level macro-phenomena of everyday life Astrophysics, cosmology
  • 7. The Core Theory in more detail: Quantum Mechanics Think of “configurations,” e.g. the location x of a particle. Assign a complex number to every possible configuration. That describes a quantum state: a “wave function” Ψ(x) that lives in a very-high-dimensional Hilbert space. Schrödinger evolution equation: x x Ψ(x)
  • 8. Measurements in Quantum Mechanics But we don’t “see” the wave function. Measurements return some specific value of the configuration (or other observable). Probability of measurement outcome = |wave function|2 . After measurement, wave function “collapses” (becomes suddenly concentrated on observed outcome). Seems absurd. But – good enough to successfully predict the outcome of every experiment ever done.
  • 9. (Some) Observables are Quantized Standard example: Simple Harmonic Oscillator. Particle moving in a potential , where x is the position and ω is the frequency. Energy is quantized into discrete levels:
  • 10. Quantum Field Theory QFT is not a successor/alternative to QM; it’s just a particular QM model, with a particular Hamiltonian. Namely: “configurations” are “values of (relativistic) fields throughout space.” E.g. φ(x). The quantum state (wave function) is a complex amplitude for each possible field configuration, Ψ[φ(x)]. Examples: electromagnetic field, electron field, top quark field, gravitational field (metric), etc.
  • 11. Particles from fields Each mode acts like a simple harmonic oscillator! Energy levels = number of particles. Wavelength = 1/momentum. Indeed, relativity+QM+particles QFT. Decompose oscillating field into a sum of “modes” of different wavelengths (Fourier transform): = + + …+
  • 12. Interactions Particle interactions are encoded in Feynman diagrams. = + + + …
  • 13. Adding up virtual particles Every particle has a momentum, and total is conserved at each vertex. When there are loops, momentum “flowing through the loop” (q) is arbitrary, and gets summed over. Result is often infinite.
  • 14. don’t need to worry about what happens here Ken Wilson: organize QFT by energy/length scale Remember: energy & momentum ~ 1/(wavelength). IR UV Λ (“cutoff” energy scale) long wavelengths/ low energies short wavelengths/ high energies
  • 15. Think of your theory as only describing energies below the ultraviolet cutoff scale Λ. I.e., only include wavelengths longer than 1/Λ. Result is an effective field theory below Λ. Effective Field Theory
  • 16. All diagrams with N legs contribute to an interaction term (in Lagrangian) between N particles. There are an infinite number of terms in EFT equations of motion… φ4 φ8 φ6
  • 17. Both the field φ and the cutoff Λ have units of energy, and the Lagrangian governing interactions is (energy)4 . So schematically we have: Higher-order terms are negligible at low energy (<< Λ). Only a finite number of relevant/marginal interactions. … but only a finite number of terms matter “relevant” “marginal” “irrelevant”
  • 18. At energies below Λ, an EFT can be a complete theory. Above Λ, new phenomena can kick in. E.g. Fermi theory of weak interactions Standard Model. Effective field theories tell us their regime of applicability: below the ultraviolet cutoff Λ. Fermi coupling
  • 19. “We haven’t quantized gravity,” but I’m treating gravity like a perfectly ordinary effective field theory. Because it is – as long as gravity is weak (far from black holes, Big Bang, etc.). In terms of curvature parameter R, interactions look like Here on Earth, 1st term is 1050 times bigger than 2nd . Quantum Gravity?
  • 20. A given effective field theory with cutoff Λ could have many “ultraviolet completions” at higher energies. That’s why it’s hard to do experiments relevant to quantum gravity: we expect Λ ~ Eplanck ~ 1015 ELHC. Multiple realizability loop quantum gravity string theory dynamical triangulations
  • 21. Known particles/forces, general relativity (Core theory) Dark matter/energy, new particles/forces, hidden sectors Underlying reality (theory of everything) Higher-level emergent phenomena of everyday life Astrophysics, cosmology Underlying physics only influences us via Core Theory.
  • 22. What about new particles/forces? strongly interacting light/ long range/ low energy heavy/ short range/ high energy weakly interacting accessible inaccessible known knowns known unknowns Unknown unknowns = violations of QFT itself.
  • 23. QFT puts very tight constraints on new phenomena. time new particle new interaction If a new particle can interact with ordinary particles: Then that particle can be created in high-energy collisions. “Crossing symmetry.”
  • 24. Constraints on new particles As-yet-undiscovered particles must be either: 1. very weakly interacting, 2. too heavy to create, or 3. too short-lived to detect. In any of those cases, the new particle would be irrelevant to our everyday lives.
  • 25. To be relevant to everyday physics, any new forces must interact with protons, neutrons, electrons, and/or photons. Experiments are ongoing (torsion balances) to search for new, weak, long-range forces. Two ways to hide: 1. weak interactions, or 2. very short ranges. Constraints on new forces
  • 26. Strength(relativetogravity) Range [Long et al. 2003; Antoniadis 2003] Experimental limits on new forces Ruled Out Allowed new gravitational- strength force (10-36 E&M)
  • 27. Known particles/forces, general relativity (Core theory) Dark matter/energy, new particles/forces, hidden sectors Underlying reality (theory of everything) Higher-level emergent phenomena of everyday life Astrophysics, cosmology New particles/forces are too heavy/weak to influence us.
  • 28. gravity other forces matter Higgs quantum mechanics spacetime Punchline: the laws of physics underlying everyday experience. Other phenomena are too massive or weakly-coupled to have any impact on the particles of which we are made.
  • 29. • Astrology is not correct. Implications of the Core Theory • You can’t bend spoons with your mind. • The soul does not survive the body.
  • 30. 3. Accessible deviations from textbook QM. (Hidden variables, spontaneous/induced collapse.) Loopholes? 2. Breakdown of QFT itself. E.g. non-local constraints/ interactions from quantum gravity (holography). 1. New forces with environment-dependent couplings. 4. Divine intervention.
  • 31. Known particles/forces, general relativity (Core theory) Dark matter/energy, new particles/forces, hidden sectors Underlying reality (theory of everything) Higher-level emergent phenomena of everyday life Astrophysics, cosmology