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Nuclei from QCD Status, Challenges and Strategy

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Title: Nuclei from QCD Status, Challenges and Strategy


1
Nuclei from QCDStatus, Challenges and Strategy
  • Martin J. Savage
  • University of Washington

2
A Grand Challenge for QCD and Nuclear Physics
  • How do the properties and interactions of
    nuclei depend upon the fundamental parameters of
    nature ?

Strong Interactions AND Beyond the Standard Model
3
Fine -Tunings in Nuclear Physics are Fine-Tunings
of QCD
Large splitting
7.654
subthreshold
a
g
4.44
Thermal Equilibrium around T8
g
Fine-Tuning 130 keV
0
Anthropic Principle
12C
4
Energy Scales and QCD
Energy levels are

LQCD f2 ( , , )
One part in 104
LQCD f1 ( , , )
LQCD f0 ( , , )
Mc , Mb , Mt in LQCD
electroweak
(Flambaum, Shuryak,)
5
Nucleon-Nucleon
  • Deuteron Binding energy is 2.2 MeV
  • a(1s0) -24 fm
  • Infrared fixed-point of QCD

6
The Strategy QCD to Nuclei
(RIA web-site)
7
Lattice QCD to A ltlt 12 Nuclei
  • 1 meson fp , mp , mr , BK ,
  • 2 meson app
  • 3 meson ?
  • 1 N gA , mN , MN , s ,
  • 2 N exploratory
  • 3 N thoughts about exploring

8
gA and app from Lattice QCD
I2 p p p p
SciDAC
JLab Lattice
Chroma
(Beane, Bedaque, Orginos, mjs)
(R. Edward, B. Joo)
cPT V Mq a
9
NN-Scattering
(Beane, mjs Epelbaum,Meissner)
Fully Dynamical Lattice QCD
(Beane, Bedaque, Orginos, Pallante, Parreno, mjs)
10
Light Nuclei from NN, NNN
(Peiper, Wiringa and Carlson)
Ground States and Excited States
11
Chiral Symmetry and the 2N, 3N and 4N
Interactions
Low energy EFT of QCD Chiral symmetries of
QCD Quark mass dependence Novel RG
behaviour Softer interaction
Weinberg , van Kolck, Kaplan, Wise, Beane,
Bedaque, Hammer, Epelbaum, Meissner, Machleidt,
Friar, Glockle, Nogga, Steele, Furnstahl, Chen,
Rupak, Lepage, Birse, McGovern, Cohen, Stewart,
Mehen, Fleming, Phillips, Lutz, Kaiser,
Timmermans, mjs, .
12
Phenomenology of NN Forces
(Bogner, Kuo, Schwenk, Entem, Machleidt,)
RG essential
Phenomenological NN Potentials consistent with
Chiral EFTs
13
The No-Core Shell Model
The goal of the No-core Shell Model is to
implement effective interaction theory to apply
the shell model correctly Taking the model out
of the shell model !
  • Chiral Symmetry of QCD
  • Natural expansion scheme
  • Two-body interaction (to N3LO)
  • Three-body interaction (at N2LO)
  • Currently fit to 3H, 3He, and 4He properties
  • Ultimately obtained from Lattice QCD
  • Has better convergence properties

(thanks to Erich Ormand)
14
Early Calcs with NCSM
( E. Ormand, P. Navratil, V. Gueorguiev J. Vary)
15
Vlow k , Chiral Potentials and Coupled Clusters
for A gt 12
Mihaila and Heisenberg
16O
?1.9 fm-1
Wloch, Gour, Piecuch, Dean, Hjorth-Jensen,
Papenbrock
D. Dean, A. Schwenk, et al.
Entem and Machleidt
16
Nuclear Matter, Large Nuclei
(Furnstahl, )
(Furnstahl, Bogner, Schwenk, Nogga,)
17
Lattice Nuclear Physics
(D.Lee, B.Borasoy and T. Schafer)
Seki, Muller, van Kolck, Triton Krebs,
Hammer, Nogga, Meissner
18
Infrared Limit Cycles in QCDand what might have
been !..The Braaten-Hammer Conjecture..
Lattice QCD
Lattice QCD will be able to explore this
(Epelbaum, Meissner)
19
Summary
  • QCD Nuclei
  • Important progress in all relevant areas
  • Lattice QCD
  • Chiral EFTs
  • Model-independent, perturbative calculations in
    light nuclei
  • Coupled Clusters
  • Density Functional Theory
  • Lattice Nuclear Physics
  • Fine-tunings of nuclear physics
  • Need to be studied as functions of Mu, Md, Ms ,
    LQCD, e.
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