Title: 1. Quantum-critical transport
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3 1. Quantum-critical transport
Collisionless-t0-hydrodynamic crossover of
CFT3s 2. Quantum criticality of Dirac fermions
Vector 1/N expansion 3. Quantum
criticality of Fermi surfaces The genus
expansion
4 1. Quantum-critical transport
Collisionless-t0-hydrodynamic crossover of
CFT3s 2. Quantum criticality of Dirac fermions
Vector 1/N expansion 3. Quantum
criticality of Fermi surfaces The genus
expansion
5Superfluid-insulator transition
M. Greiner, O. Mandel, T. Esslinger, T. W.
Hänsch, and I. Bloch, Nature 415, 39 (2002).
6Insulator (the vacuum) at large U
7Excitations
8Excitations
9Excitations of the insulator
10CFT3
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12CFT at Tgt0
13Quantum critical transport
S. Sachdev, Quantum Phase Transitions, Cambridge
(1999).
14Quantum critical transport
K. Damle and S. Sachdev, Phys. Rev. B 56, 8714
(1997).
15Quantum critical transport
P. Kovtun, D. T. Son, and A. Starinets, Phys.
Rev. Lett. 94, 11601 (2005) , 8714 (1997).
16Quantum critical transport
17Quantum critical transport
18Density correlations in CFTs at T gt0
19Quantum critical transport
20Quantum critical transport
21Density correlations in CFTs at T gt0
K. Damle and S. Sachdev, Phys. Rev. B 56, 8714
(1997).
22Collisionless to hydrodynamic crossover of SYM3
P. Kovtun, C. Herzog, S. Sachdev, and D.T. Son,
Phys. Rev. D 75, 085020 (2007)
23Collisionless to hydrodynamic crossover of SYM3
P. Kovtun, C. Herzog, S. Sachdev, and D.T. Son,
Phys. Rev. D 75, 085020 (2007)
24 1. Quantum-critical transport
Collisionless-t0-hydrodynamic crossover of
CFT3s 2. Quantum criticality of Dirac fermions
Vector 1/N expansion 3. Quantum
criticality of Fermi surfaces The genus
expansion
25Nematic order in YBCO
V. Hinkov, D. Haug, B. Fauqué, P. Bourges, Y.
Sidis, A. Ivanov, C. Bernhard, C. T. Lin, and B.
Keimer , Science 319, 597 (2008)
26Broken rotational symmetry in the pseudogap phase
of a high-Tc superconductor
R. Daou, J. Chang, David LeBoeuf, Olivier
Cyr-Choiniere, Francis Laliberte, Nicolas
Doiron-Leyraud, B. J. Ramshaw, Ruixing Liang, D.
A. Bonn, W. N. Hardy, and Louis Taillefer arXiv
0909.4430
S. A. Kivelson, E. Fradkin, and V. J. Emery,
Nature 393, 550 (1998).
27 1. Quantum-critical transport
Collisionless-t0-hydrodynamic crossover of
CFT3s 2. Quantum criticality of Dirac fermions
Vector 1/N expansion 3. Quantum
criticality of Fermi surfaces The genus
expansion
28 1. Quantum-critical transport
Collisionless-t0-hydrodynamic crossover of
CFT3s 2. Quantum criticality of Dirac fermions
Vector 1/N expansion 3. Quantum
criticality of Fermi surfaces The genus
expansion
29d-wave superconductivity in cuprates
Electron states occupied
30d-wave superconductivity in cuprates
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-
31d-wave superconductivity in cuprates
-
-
32d-wave superconductivity in cuprates
4 two-component Dirac fermions
33d-wave superconductivity in cuprates
34Time-reversal symmetry breaking
35Lattice rotation symmetry breaking
36M. Vojta, Y. Zhang, and S. Sachdev, Phys. Rev.
Lett. 85, 4940 (2000) E.-A. Kim, M. J. Lawler, P.
Oreto, S. Sachdev, E. Fradkin, S.A. Kivelson,
Phys. Rev. B 77, 184514 (2008).
37Ising order and Dirac fermions couple via a
Yukawa term.
Nematic ordering
Time reversal symmetry breaking
M. Vojta, Y. Zhang, and S. Sachdev, Physical
Review Letters 85, 4940 (2000)
38Ising order and Dirac fermions couple via a
Yukawa term.
Nematic ordering
Time reversal symmetry breaking
M. Vojta, Y. Zhang, and S. Sachdev, Physical
Review Letters 85, 4940 (2000)
39Expansion in number of fermion spin components Nf
Integrating out the fermions yields an effective
action for the scalar order parameter
Y. Huh and S. Sachdev, Physical Review B 78,
064512 (2008).
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41 1. Quantum-critical transport
Collisionless-t0-hydrodynamic crossover of
CFT3s 2. Quantum criticality of Dirac fermions
Vector 1/N expansion 3. Quantum
criticality of Fermi surfaces The genus
expansion
42 1. Quantum-critical transport
Collisionless-t0-hydrodynamic crossover of
CFT3s 2. Quantum criticality of Dirac fermions
Vector 1/N expansion 3. Quantum
criticality of Fermi surfaces The genus
expansion
43Quantum criticality of Pomeranchuk instability
44Electron Greens function in Fermi liquid (T0)
45Electron Greens function in Fermi liquid (T0)
46Quantum criticality of Pomeranchuk instability
47Quantum criticality of Pomeranchuk instability
48Quantum criticality of Pomeranchuk instability
49Quantum criticality of Pomeranchuk instability
50Quantum criticality of Pomeranchuk instability
Quantum critical
51Quantum criticality of Pomeranchuk instability
Quantum critical
Classical d2 Ising criticality
52Quantum criticality of Pomeranchuk instability
Quantum critical
D21 Ising criticality ?
53Quantum criticality of Pomeranchuk instability
54Quantum criticality of Pomeranchuk instability
55Quantum criticality of Pomeranchuk instability
56Quantum criticality of Pomeranchuk instability
57Quantum criticality of Pomeranchuk instability
58Quantum criticality of Pomeranchuk instability
Hertz theory
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60Quantum criticality of Pomeranchuk instability
Sung-Sik Lee, Physical Review B 80, 165102 (2009)
61Quantum criticality of Pomeranchuk instability
A string theory for the Fermi surface ?
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75Greens function of a fermion
T. Faulkner, H. Liu, J. McGreevy, and D. Vegh,
arXiv0907.2694
See also M. Cubrovic, J Zaanen, and K. Schalm,
arXiv0904.1993
76Greens function of a fermion
T. Faulkner, H. Liu, J. McGreevy, and D. Vegh,
arXiv0907.2694
Similar to non-Fermi liquid theories of Fermi
surfaces coupled to gauge fields, and at quantum
critical points
77Free energy from gravity theory
F. Denef, S. Hartnoll, and S. Sachdev,
arXiv0908.1788
78Conclusions
The AdS/CFT offers promise in providing a new
understanding of strongly interacting quantum
matter at non-zero density