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Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the structure and interactions of hadrons and the properties of hadronic matter from first principles Quantitative calculation of experimental observables Insight into how QCD works

Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

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Page 1: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

Impact of Lattice QCDon Nuclear Physics

J. W. Negele

NSF October 10, 2003

GOAL: Understand the structureand interactions of hadrons andthe properties of hadronic matterfrom first principles

• Quantitative calculation of

experimental observables

• Insight into how QCD works

Page 2: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

NSF 10-10 J. W. Negele 2

Nuclear Physics Perspective

• Nuclear physics

Finite nuclei

Structure

EM Probes

Spectroscopy

Nuclear matter

Bulk properties

Pairing

Neutron stars

• Hadronic physics

Hadrons

Structure

EM Probes

Spectroscopy

Hadronic matter

Bulk properties

Color superconductivity

Neutron stars

Ambiguity in N-N interaction - scales

Fundamental QCD Lagrangian

Page 3: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

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Page 4: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

NSF 10-10 J. W. Negele 4

Page 5: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

NSF 10-10 J. W. Negele 5

Three Areas of QCD PhysicsLattice calculations essential to understandingphysics in each case

• Heavy Quark Systems

Confirm standard model or elucidate physicsbeyond it

• QCD Thermodynamics

Properties of hadronic matter under extremeconditions

Foundation for RHIC physics → LHC

• Hadron Structure

Quark and gluon structure of hadrons

Spectroscopy

Hadron-hadron interactions

Crucial to understand physics from Bates,Jlab, SLAC, Fermilab and RHIC-spin

Page 6: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

NSF 10-10 J. W. Negele 6

Hadron Structure

• Form factors

GE , GM Jlab

Strangeness FF Sample, Happex

• Transition form factors

N → ∆ - deformation Bates, JLab

• Parton Distributions RHIC spin, Hermes …

Quark distributions <x>q

Spin distribution - spin crisis ∆Σ ~ <1>∆q

Transversity distribution <1>δq

• Generalized Parton Distributions Jlab

Total quark angular momentum J

Transverse structure of nucleon

Transverse size → 0 as x → 1

Page 7: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

NSF 10-10 J. W. Negele 7

Electromagnetic Form Factors

Page 8: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

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Page 9: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

NSF 10-10 J. W. Negele 9

Nucleon-Delta Transition Form Factor

• Calculate transition amplitudes

M1 dominates

C2 and E2 vanish if nucleon and deltaspherical

• Lattice calculations

hep-lat/030007018 Alexandrou, Tsapalis, J.N et. al.

M1/E2 expt

= -1.6 (.4)

Quenched

= -4.8 (1.1)

Full QCD

= -3.5 (1.2)

Page 10: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

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Page 11: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

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Page 12: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

NSF 10-10 J. W. Negele 12

Momentum Fraction <x>

Page 13: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

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Page 14: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

NSF 10-10 J. W. Negele 14

Momentum Fraction <x>

Page 15: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

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Page 16: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

NSF 10-10 J. W. Negele 16

Quark Angular Momentum

Connected diagram contributions

Page 17: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

NSF 10-10 J. W. Negele 17

Transverse Structure of Parton Distribution

Page 18: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

NSF 10-10 J. W. Negele 18

Spectroscopy

• N* Spectroscopy JLab

Number and structure of states

• Exotics JLab

Glueballs

Exotic mesons - gluonic excitations

Pentaquark

• Hadronic Interactions

Heavy-light meson and baryon interactions

• Light quark exchange

• Gluon contributions

Page 19: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

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Page 20: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

NSF 10-10 J. W. Negele 20

Exotic Mesons

Page 21: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

NSF 10-10 J. W. Negele 21

Roper Resonance

Page 22: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

NSF 10-10 J. W. Negele 22

Pentaquarks

Page 23: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

NSF 10-10 J. W. Negele 23

QCD Thermodynamics

• Phase diagram of QCD

• Zero baryon density (µ = 0)

Transition to Quark Gluon Plasma

E(T), P(T)

• Non-zero baryon density (µ ≠ 0)

Critical point - RHIC signatures

Equation of state - neutron stars

Superconducting phases

• Quark number susceptibility

Event by event fluctuations

• Quark-antiquark potential

J/Ψ production

• Current correlation functions - spectral function

Dilepton and photon emission

Transport coefficients

Page 24: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

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Page 25: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

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Page 26: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

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Page 27: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

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Page 28: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

NSF 10-10 J. W. Negele 28

Quark Susceptibility

Page 29: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

NSF 10-10 J. W. Negele 29

Screening of Heavy Quark Potential

Kaczmarek et al hep-lat/0309121

Page 30: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

NSF 10-10 J. W. Negele 30

Spectral Functions

J/Ψ survives up to 2.25 TC

Petreczky et al hep-lat/0309012

Page 31: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

NSF 10-10 J. W. Negele 31

Fundamental aspects of QCD

Insight into how QCD works

• Confinement

Mechanism, flux tubes

• Chiral symmetry breaking

Instantons, zero modes

• Low energy effective theory

Parameters of chiral perturbation theory

• Structure of wave functions

Variational wave functions

Density-density correlation functions

• Configurations that dominate path integral

Instantons

• Dependence on parameters of QCD

Nc , Nf , gauge group, mq

Page 32: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

NSF 10-10 J. W. Negele 32

Long Term Effort

• Quantities for which we already have theoreticaland computational tools

Need 10’s of Teraflops - Petaflops for precisioncalculations at level of few percent

• Challenges with the potential for opening stillmore vistas

Example: Finite chemical potential

Cluster algorithms

• Sustained effort at leading edge of technologycurve provides outstanding opportunity forfundamental advances in Nuclear Theory

Page 33: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

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Page 34: Impact of Lattice QCD on Nuclear Physicsweb.physics.ucsb.edu/~sugar/nuclear.pdf · Impact of Lattice QCD on Nuclear Physics J. W. Negele NSF October 10, 2003 GOAL: Understand the

NSF 10-10 J. W. Negele 34

Computational Issues

• Fermion determinant - Full QCD

• Lattice spacing small

• Quark mass small

• Lattice volume large

• Disconnected diagrams