liste des publications 1. v.a. kazakov, i.k. kostov, nonlinear strings in two dimensional u(∞) gauge theory, nucl. phys.b176

LISTE DES PUBLICATIONS
1.
V.A. Kazakov, I.K. Kostov, Nonlinear strings in two dimensional
U(∞) gauge theory, Nucl. Phys.B176:199-215,1980.
2.
V.A. Kazakov, Wilson loop average for an arbitrary contour in
two-dimensional U(N)- gauge theory, Nucl. Phys. B 179 (1981) 283.
3.
V.A. Kazakov, I.K. Kostov, Computation of the Wilson loop
functional in two-dimensional U(∞) lattice gauge theory, Phys.
Lett. B 105 (1981) 453
4.
V.A. Kazakov, A.A. Migdal, Baryons as solitons in loop space,
Phys. Lett. B 103 (1981) 214.
5.
V.A. Kazakov, A.A. Migdal, Baryons as solitons in a loop space (en
russe) Pisma Zh. Eksp. Teor. Fiz. 33 (1981) 661
6.
V.A. Kazakov, I.K. Kostov, A.A. Migdal, The baryon propagator in
terms of mesonic amplitudes, Phys. Lett. B 115 (1982) 491
7.
V.A. Kazakov, A.A. Migdal, Weak coupling phase of Eguchi-Kawai
model, Phys. Lett. B 116 (1982) 423
8.
V.A. Kazakov, A.A. Migdal, Reduced QCD in the Veneziano limit :
meson and baryon amplitudes, Phys. Lett. B 119 (1982) 435
9.
V.A. Kazakov, Connection between quantum chromodynamics and a free
string on a lattice, Sov. Phys. Jetp 58 (1983) 1096, Zh. Eksp.
Teor. Fiz. 85 (1983) 1887
10.
V.A. Kazakov, U(infinity) lattice gauge theory as a lattice free
string theory, Phys. Lett. B 128 (1983) 316.
11.
V.A. Kazakov, T.A. Kozhamkulov, A.A. Migdal, Phase transition with
an infinite number of order parameters in U(infinity) lattice
gauge theory, Jetp Lett. 41 (1985) 543, Pisma Zh. Eksp. Teor. Fiz
41 (1985)
12.
V.A. Kazakov, T.A. Kozhamkulov, A.A. Migdal, Gauge invariant
master field in U(∞) L.G.T. : a pathway from the strong to weak
coupling phases, Nucl. Phys. B 285 [FS19] (1987) 760
13.
V.A. Kazakov, Bilocal regularization of models of random surfaces,
Phys. Lett. B 150 (1985) 282.
14.
V.A. Kazakov, I.K. Kostov, A.A. Migdal, Critical properties of
randomly triangulated planar random surfaces, Phys. Lett. B 157
(1985) 295
15.
D.V. Boulatov, V.A. Kazakov, I.K. Kostov, A.A. Migdal, Possible
types of critical behaviour and the mean size of dynamically
triangulated random surfaces, Phys. Lett. B 174 (1986) 87
16.
D.V. Boulatov, V.A. Kazakov, I.K. Kostov, A.A. Migdal, Dynamically
triangulated planar random surfaces : analytical study, Bulgarian
J. of Phys. 13 (1986) 304.
17.
D.V. Boulatov, V.A. Kazakov, I.K. Kostov, A.A. Migdal, Dynamically
triangulated planar random surfaces : Monte Carlo simulations,
Bulgarian J. of Phys. 13 (1986) 313.
18.
D.V. Boulatov, V.A. Kazakov, I.K. Kostov, A.A. Migdal, Analytical
and numerical study of a model of dynamically triangulated random
surfaces, Nucl. Phys. B 275 [FS17] (1986) 641.
19.
V.A. Kazakov, Exact solution of the Ising model on a random
two-dimensional lattice, Jetp Lett. 44 (1986) 133, Pisma Zh. Eksp.
Teor. Fiz. 44 (1986) 105.
20.
V.A. Kazakov, Ising model on dynamical planar random lattice :
exact solution, Phys. Lett. A 119 (1986) 140.
21.
D.V. Boulatov, V.A. Kazakov, The Ising model on a random planar
lattice : the structure of phase transition and the exact critical
exponents, Phys. Lett. B 186 (1987) 379.
22.
D.V. Boulatov, V.A. Kazakov, Universality, critical exponents and
mass gap in D-0 limit of the model of dynamically triangulated
random surfaces, Phys. Lett. B 184 (1987) 247.
23.
D.V. Boulatov, V.A. Kazakov, Summing Feynman graphs by Monte Carlo
: planar phi-3 theory and dynamically triangulated random
surfaces, Phys. Lett. B 214 (1988) 581
24.
V.A. Kazakov, Exactly solvable Potts models, bond and tree-like
percolation on dynamical (random) planar lattice, Nucl. Phys. B 4
(Proc. Supp.) (1988) 93
25.
V.A. Kazakov, Exactly solvable models of 2D-quantum gravity on the
lattice, Les Houches 1988 in Champs, Cordes et Phenom nes
Critiques, Elsevier Science Pub. 1989.
26.
V.A. Kazakov, Percolation on a fractal with the statistics of
planar Feynman graphs, Modern Phys. Lett. 4A (1989) 1691
27.
V.A. Kazakov, A.A. Migdal, Recent progress in the theory of
non-critical strings, Nucl. Phys. B 311 (1988) 171
28.
V.A. Kazakov, The appearance of matter fields from quantum
fluctuations of 2D-gravity, Mod. Phys. Lett. A4 (1989) 2125
29.
V.A. Kazakov, A simple solvable model of quantum field theory of
open strings, Phys. Lett. B237 (1990) 212.
30.
E. Brézin, V.A. Kazakov, Exactly solvable field theories of closed
strings, Phys. Lett. B236 (1990) 144
31.
E. Brézin, M.R. Douglas, V.A. Kazakov, S.H. Shenker, The Ising
model coupled to 2D- gravity : a non perturbative analysis, Phys.
Lett. B237 (1990) 43.
32.
E. Brézin, V.A. Kazakov, Al.B. Zamolodchikov, Scaling violation in
a field theory of closed strings in one physical dimension, Nucl.
Phys. B338 (1990) 673
33.
V.A. Kazakov, External matrix field problem and new
multicriticalities in (-2) dimensional random surfaces, Nucl.
Phys. B354, (1991) 614.
34.
V.A. Kazakov, Bosonic strings and string field theories in
one-dimensional target space, in “Random surfaces and quantum
gravity”, Cargése 1990, O. Alvarez, E. Marinari, P. Windey eds.,
(1991).
35.
D.V. Bulatov, V.A. Kazakov, B.E. Rusakov, Monte Carlo simulation
of two-dimensional quantum gravity with central charge c< 1,
Sov.J.Nucl.Phys.51:(1990) 1134-1138; Yad.Fiz.51 (1990) 1796-1804.
36.
D. Boulatov, V.A. Kazakov, Vortex anti-vortex sector of one
dimensional string theory via the upside down matrix oscillator,
Presented at Workshop on Random Surfaces and 2-d Quantum Gravity,
Barcelona, Spain, Jun 10-14, 1991, Nucl.Phys.Proc.Suppl. 25A
(1992) 38-53.
37.
J. Ambjorn, D. Boulatov, V.A. Kazakov, The bosonic string
simulated as Φ^3 gravity, Nucl.Phys.Proc.Suppl. 17 (1990) 617-620.
38.
J. Ambjorn, D. Boulatov, V.A. Kazakov, The bosonic string
represented as Φ^3 graphs: new Monte Carlo simulations,
Mod.Phys.Lett. A5 (1990) 771.
39.
V.A. Kazakov, Double scaling solution and renormalized observables
for 1D bosdonic string field theory, College Station 1990,
Proceedings of “Strings-1990”, (1990) 19-31.
40.
V.A. Kazakov, Nonperturbative solution of one dimensional bosonic
string field theory, Proceedings of the conference “Modern quantum
field theory”, Bombay (1990) 65-76.
41.
D.V. Boulatov, V.A. Kazakov, One-dimensional string theory with
vortices as the upside-down matrix oscillator, J. Mod. Phys. A8
(1993) 809, hep-th/0012228.
42.
V.A. Kazakov and A.A. Migdal, Induced gauge theory at large N,
Nuclear Physics B397 (1993) 214.
43.
V.A. Kazakov, I.K. Kostov, Loop gas model for open strings,
Nuclear Physics B386 (1992) 520.
44.
N. Kawamoto, V.A. Kazakov, Y. Saeki, Y. Watabiki, Fractal
structure of two-dimensional gravity coupled to D=-2, Phys. Rev.
Lett. 68 (1992) 2113.
45.
N. Kawamoto, V.A. Kazakov, Y. Saeki, Y. Watabiki, Internal
geometry of two-dimensional gravity with c=-2 matter, Nucl. Phys.
Proc. Suppl. 26 (1992) 584-586
46.
J.-M. Daul, V.A. Kazakov, I.K. Kostov, Rational theories of 2D
gravity from the two-matrix model, Nucl. Phys. B409 (1993) 311;
47.
V.A. Kazakov, D-dimensional induced gauge theory as a solvable
matrix model, Proc. Intern. Symp. “Lattice ‘92” on Lattice gauge
theory, Amsterdam, Sept. 1992, Nucl. Phys. B(Proc. Suppl.) 30
(1993) 149.
48.
M. Douglas, V.A. Kazakov, Large N phase transition in continuum
QCD in two- dimensions, Phys. Lett. B319 (1993) 219
49.
J.-M. Daul, V.A. Kazakov, Wilson loop for large N Yang-Mills
theory on a two-dimensional sphere, Phys. Lett. B335 (1994) 371.
50.
V.A. Kazakov, String project in QCD, Trieste Spring School 93,
dans Proc. Trieste Spring School, ICTP.
51.
V.A. Fateev, V.A. Kazakov, P.B. Wiegmann, Principal chiral field
at large N, Nucl. Phys. B424 [FS] (1994) 505-520.
52.
V.A. Fateev, V.A. Kazakov, P.B. Wiegmann, Large-N chiral field in
two dimensions, Phys. Rev. Lett., 73 (1994) 1750-1753.
53.
V.A. Kazakov, Exact results in 2D principal chiral field at large
N, Talk on Wendisch-Rietz Symposium 1994, Proceedings, Theory of
elementary particles, 379-383.
54.
V.A. Kazakov, 2D principal chiral field at large N as a possible
solvable 2D string theory, Proc. of Les Houches Sommer school,
session LXII, 1994, “Fluctuating geometries in statistical
mechanics and field theory”, F. David, P. Ginsparg and J.
Zinn-Justin, eds., 1 Elsevier Science 1998.
55.
V.A. Kazakov, T. Wynter, Large-N phase transition in the heat
kernel on the U(N) group, Nucl.Phys.B440:407-420,1995.
56.
V. A. Kazakov, M. Staudache, T. Wynter , Advances in large N group
theory and the solution of two-dimensional R^2 gravity,
Proceedings of the talk at Institut d’Etudes Scientifiques de
Cargese: Nato Advanced Summer Institute: Low Dimensional
Applications of Quantum Field Theory, Cargese, France, 11-29 July
1995.
57.
V. A. Kazakov, $R^2$ 2D Quantum Gravity and Dually Weighted Graphs
Proceedings of the talk given on the Conference “Frontiers in
Quantum Field Theory” (in Honor of the 60th Birthday of Prof. K.
Kikkawa), December 14-17 (1995), Osaka (Japan), World Scientific,
Singapore, hep-th/9605098.
58.
V.A. Kazakov, M. Staudacher, T. Wynter, Character expansion
methods for matrix models of dually weighted graphs, Comm. Math.
Phys. 177 (1996) 451-468.
59.
V.A. Kazakov, M. Staudacher, T. Wynter, Almost flat planar graphs,
Comm. Math.Phys. 179 (1996) 235-256.
60.
V.A. Kazakov, M. Staudacher, T. Wynter, Exact solution of discrete
two-dimensional R^2 gravity Nucl. Phys. B471 (1996) 309-333
61.
V. A. Kazakov, A Matrix Model Solution of Hirota Equation,
preprint YITP-97/044 (Yukawa Inst., Kyoto) et LPTENS-97/44
(Paris), hep-th 9711019, proceedings of the NATO Advanced Research
Workshop “New developments in quantum field theory”, Zakopane,
Poland, june 14-20 (1997), ed. P. H. Damgaard, Plenum (1998), 97.
62.
G. Falkovich, V. A. Kazakov and V. Lebedev, Particle dispersion in
a multidimensional random flow with arbitrary temporal
correlations, Physica A249 (Statistical and Theoretical Physics
(1998) 36.
63.
V.A.Kazakov, P. Zinn-Justin, Two-matrix model with BABA
interaction, preprint hep-th/9808043, Nucl.Phys. B546 (1999)
647-668.
64.
V. A. Kazakov, I. K. Kostov, N. Nekrasov, D-particles, Matrix
Integrals and KP hierachy, preprint hep-th/9810035, Nucl.Phys.
B557 (1999) 413-442.
65.
J. Hoppe, V. A. Kazakov, I. K. Kostov, Dimensionally Reduced SYM_4
as Solvable Matrix Quantum Mechanics, preprint hep-th/9907058.
Nucl.Phys. B571 (2000) 479-509.
66.
E. Brezin, V. A. Kazakov, Universality of correlations of levels
with discrete statistics, preprint math-ph/9909009; Comm. Math.
Phys. 214 (2000), 233-247.
67.
V. A. Kazakov, Solvable Matrix Models, Random Matrices and their
Applications, MSRI pblications, volume 40 (2001); preprint
hep-th/0003064.
68.
V. A. Kazakov, Field Theory as a Matrix Model, preprint
hep-th/0003065, Nucl. Phys. B587 (2000) 645-656.
69.
V. A. Kazakov, I. K. Kostov, D. Kutasov, A matrix model for the
two-dimensional black hole, hep-th/0101011 (2000), Nuclear Physics
B622 (2002) 141-188
70.
V. A. Kazakov, I. K. Kostov, D. Kutasov, Matrix model of the (1+1)
dimensional dilatonic black hole in the double scaling limit,
proceedings of the TMR Conference “Non-perturbative Quantum
Effects 2000”, Paris Septembre 7-13, 2000. European program
“Integrability, Non-perturbative Effects and Symmetry in Quantum
Field Theory” (ERBFMRXCT96-0012).
71.
V. A. Kazakov S. Yu. Alexandrov, Correlators in 2D string theory
with vortex condensation, Nucl.Phys. B610 (2001) 77;
hep-th/0104094.
72.
V. A. Kazakov, A. A. Tseytlin, On free energy of 2-d black hole in
bosonic string theory, JHEP 0106 (2001) 021, hep-th/0104138.
73.
V. A. Kazakov, Vortex condensation and black hole in 2-d string
theory, proceedings of the conference STRINGS-2001, Bombay
(India); hep-th/0105195.
74.
S.Yu. Aleksandrov, V.A. Kazakov, I.K. Kostov, Time-dependent
backgrounds of 2D string theory, Nucl.Phys. B640:119-144,2002)
119-144; hep-th/0205079.
75.
R.Dijkgraaf, S.Gukov, V.A.Kazakov, C.Vafa, Perturbative Analysis
of Gauged Matrix Models, Published in Phys.Rev.D68: 04507 (2003) ,
hep-th/0210238.
76.
S.Yu.Alexandrov, V.A.Kazakov, Thermodynamics of 2D string theory,
JHEP 0301 (2003) 078, hep-th/0210251.
77.
V. A. Kazakov, A. Marshakov, “Complex Curve of the Two Matrix
Model and its Tau-function”, special issue of J.Phys. A on Random
Matrix Theory, J.Phys. A36 (2003) 3107-3136, hep-th/0211236.
78.
S. Yu. Alexandrov, V. A. Kazakov, I. K. Kostov, “2D String Theory
as Normal Matrix Model”, Nucl.Phys.B667, 90-110,2003,
hep-th/0302106.
79.
S.Y.Alexandrov, V.A.Kazakov and D.Kutasov, “Non-perturbative
effects in matrix models and D-branes”, JHEP 0309 (2003) 057,
hep-th/0306177.
80.
V.A.Kazakov, A.Marshakov, J.A.Minahan, K.Zarembo,
“Classical/quantum integrability in AdS/CFT”, JHEP 0405:024,2004,
hep-th/0402207
81.
V.A.Kazakov, I.K.Kostov, “Instantons in non-critical strings from
the two-matrix model”, hep-th/0403152, The Ian Kogan Memorial
Collection “From Fields to Strings: Circumnavigating Theoretical
Physics”, World Scientific Edition, 2005
82.
V.A. Kazakov, K. Zarembo, “Classical/quantum integrability in
non-compact sector of ADS/CFT”, JHEP 0410:060,2004,
hep-th/0410105.
83.
N.Beisert, V.A.Kazakov, K.Sakai, “Algebraic curve for the SO(6)
sector of AdS/CFT”, hep-th/0410253,
Commun.Math.Phys.263:611-657,2006.
84.
N.Beisert, V.A.Kazakov, K.Sakai, K.Zarembo, “The algebraic curve
of classical superstring on AdAS5xS5”, hep-th/0502226,
Commun.Math.Phys.263:659-710,2006.
85.
N.Beisert, V.A.Kazakov, K.Sakai, K.Zarembo, “Complete Spectrum of
Long Operators in N=4 SYM at One Loop”, hep-th/0503200, JHEP
0507:030,2005.
86.
N. .Gromov, V.A.Kazakov, “Double Scaling and Finite Size
Corrections in sl(2) Spin Chain”, hep-th/0510194, Nucl.Phys. B736:
199-224,2006.
87.
N.Gromov, V.A.Kazakov, K.Sakai, P.Vieira, “Strings as
multi-particle states of quantum sigma-models”, hep-th/0603043,
Nucl.Phys.B764:15-61,2007.
88.
N.Gromov, V.A.Kazakov, “Asymptotic Bethe ansatz from string sigma
model on S3 x R”, hep-th/0605026, Nucl.Phys.B780:143-160,2007.
89.
N.Gromov, V.A.Kazakov, P.Vieira, “Classical limit of Quantum
Sigma-Models from Bethe Ansatz”, Proceedings of the Solvay
workshop “Bethe Ansatz: 75 Years Later” (Brussels, October 2006),
PoS SOLVAY:005,2006.
90.
V.A.Kazakov, A.Sorin, A.Zabrodin, “Supersymmetric Bethe Ansatz and
Baxter Equations from Discrete Hirota Dynamics”, hep-th/0703147,
Nucl.Phys.B790/3 (2007)345-413. .
91.
V.A.Kazakov, P.Vieira, “From characters to (super)spin chains by
fusion”, arXiv:hep-th/0711.2470.

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