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Ðåçóëüòàò ïîèñêà |
Ïîèñê êíèã, ñîäåðæàùèõ: correlation length
Êíèãà | Ñòðàíèöû äëÿ ïîèñêà | Kogut J.B., Stephanov M.A. — The Phases of Quantum Chromodynamics: From Confinement to Extreme Environments | | Cardy J. — Scaling and renormalization in statistical physics | | Sornette D. — Critical phenomena in natural sciences | | Schmalzried H. — Chemical Kinetics of Solids | 292, 302 | Gomez C., Ruiz-Altaba M., Sierra G. — Quantum Groups in Two-Dimensional Physics | 272, 276 | Zinn-Justin J. — Quantum field theory and critical phenomena | 529, 551 | Di Francesco P., Mathieu P., Senechal D. — Conformal field theory | 68 | Zinn-Justin J. — Quantum field theory and critical phenomena | 502 | Doi M., See H. — Introduction to Polymer Physics | 35 | Herrmann H.J. (ed.), Roux S. (ed.) — Statistical models for the fracture of disordered media | 115, 123, 182 | Parisi G. — Statistical field theory | 36, 121, 225, 286 | Grimmett G. — Percolation | 127, 214, 235, 237, 304 | Huang K. — Statistical Mechanics | 395 | Liddle A., Lyth D.H. — Cosmological Inflation and Large-Scale Structure | 73 | Stauffer D., Aharony A. — Introduction To Percolation Theory | 10 | Safran S.A. — Statistical thermodynamics on surfaces, interfaces and membranes | 96, 97, 118 | Heermann D.W. — Computer Simulation Methods in Theoretical Physics | 82, 85 | Palmer J. — Planar Ising Correlations | 96, 105, 106 | Schenk C.A., Schueller G.I. — Uncertainty Assessment of Large Finite Element Systems | 81 | Kapusta J.I. — Finite-temperature field theory | 113 | Itoh K., Fukayama A. — Transport and Structural Formation in Plasmas | 145, 160 | Thouless D.J. — Topological quantum numbers in nonrelativistic physics | 25, 102 | Getzlaff M. — Fundamentals of Magnetism | 79 | Chorin A.J. — Vorticity and turbulence | 114 | Yeomans J.M. — Statistical Mechanics of Phase Transitions | 10, 20 | Chaikin P.M., Lubensky T.C. — Principles of condensed matter physics | 154—155, 213, 214, 228, 231, 244, 262, 341, 665 | Domb C., Green M.S. (eds.) — Phase Transitions and Critical Phenomena (Vol. 1) | 100 | Kadanoff L.P. — Statistical physics | 56, 61 | Kerker M. — The scattering of light | 566 | Gompper G., Schick M. — Self-Assembling Amphiphilic Systems | 42, 80—81, 89—90, 96, 110, 114, 116, 124, 140 | Dagotto E., Alvarez G., Cooper S.L. — Nanoscale phase separation and colossal magnetoresistance | 89 | Stauffer D., Aharony A. — Introduction to percolation theory | 10 | Slade G. — The Lace Expansion and Its Applications | 13, 88, 126 | Schroeder M.R. — Schroeder, Self Similarity: Chaos, Fractals, Power Laws | 31, 43, 352, 355, 361, 367 | Rubinstein M., Colby R.H. — Polymer Physics | 162 | van Baal P. (ed.) — Confinement, duality, and non-perturbative aspects of QCD | 171, 183, 242, 425 | Nagaosa N. — Quantum field theory in condensed matter physics | 55 | Dalvit D.A.R., Frastai J., Lawrie I.D. — Problems on statistical mechanics | 5.16, 5.28 | Stanley H.E. — Introduction to phase transitions, and critical phenomena | 46, 66, 224, 240 | Rickayzen G. — Green's functions and condensed matter | 315, 317 | Unertl W.N. — Physical Structure | 701, 740, 749, 753, 798, 799, 804, 806 | Rivers R.J. — Path Integral Methods in Quantum Field Theory | 133 | Auerbach A. — Interacting electrons and quantum magnetism | 131, 135, 140, 149, 162, 192, 203 | Cowan B. — Topics In Statistical Mechanics | 153, 154 | Callaghan P. — Principles of Nuclear Magnetic Resonance Microscopy | 363, 394, 414 | Huang K. — Introduction to Statistical Physics | 201 | Gruener G. — Density waves in solids | 13, 97, 98, 101 | Gardiner C.W.W., Haken H. — Handbook of Stochastic Methods: For Physics, Chemistry and the Natural Sciences | 320 | Efros A.L. (ed.), Pollak M. (ed.) — Electron-electron interactions in disordered systems | 322, 349 | Kleinert H., Schulte-Frohlinde — Critical Properties of (Phi)P4-Theories | 4 | Schulman L.S. — Techniques and applications of path integration | 291, 298 | ter Haar D. — Elements of Statistical Mechanics | 354 | Baxter R.J. — Exactly Solved Models in Statistical Mechanics | 19 | Shankar R. — Principles of quantum mechanics | 629 | Daniel C. Mattis — The theory of magnetism made simple: an introduction to physical concepts and to some useful mathematical methods | 431, 454, 460, 534 | Pathria P.K. — Statistical Mechanics | 353, 355, 364, 406, 414, 417 | Amit D.J. — Field theory, the renormalization group, and critical phenomena | 4, 20, 27, 160, 178, 186, 190, 206—208, 214, 278, 319, 321, 335 | Hercules Proceedings (Vol. I) (unknown book) | 59, 253, 254, 294, 298, 30 | van Dijk M.A., Wakker A. — Concepts of Polymer Thermodynamics | 184, 186 | Tsang L., Kong J.A., Ding K.- H. — Scattering of electromagnetic waves (Vol 1. Theories and applications) | 130, 176, 181, 182, 392 | Phillips P. — Advanced Solid State Physics | 309 | Ashcroft N.W., Mermin N.D. — Solid State Physics | 714 | Goldenfeld N. — Lectures on Phase Transitions and the Renormalization Group | 31, 98, 110 | Weinberg S. — The Quantum Theory of Fields. Vol. 2 Modern Applications | 337—338 | Papadopoulos G.J. (ed.), Devreese J.T. (ed.) — Path integrals and their applications in quantum, statistical, and solid state physics | 452—453 | Itzykson C., Drouffe J-M. — Statistical field theory. Vol. 1 | 40 | Christe P., Henkel M. — Introduction to conformal invariance and its applications to critical phenomena | 3, 22, 42, 150, 187 | Chaikin P., Lubensky T. — Principles of condensed matter physics | 154—5, 213, 214, 228, 231, 244, 262, 341, 665 | Saito Y. — Statistical physics of crystal growth | 29, 132, 137 | Gould H., Tobochnik J., Christian W. — An introduction to computer simulation methods | 619, 621, 646 | Marder M.P. — Condensed matter physics | 697 | Henkel M. — Conformal Invariance and Critical Phenomena | 2, 5, 41, 68, 222, 279 | Tsang L., Kong J.A. — Scattering of electromagnetic waves (Vol 3. Advanced topics) | 139, 140, 168, 187 | Authier A., Lagomarsino S., Tanner B. — X-ray and neutron dynamical diffraction | 118 | Hartmann A.K., Rieger H. — Optimization Algorithms in Physics | 54, 82, 84, 252 | Kardar M. — Statistical physics of fields | 13, 47, 57, 58, 103 | Morandi G. — Statistical Mechanics: An Intermediate Course | 375, 378 | ter Haar D. — Elements of Statistical Mechanics | 354 | Davies P. — The New Physics | 209, 213—218, 220, 223, 226—227, 231, 339—340 | Meyer-Ortmanns H., Reisz T. — Principles of phase structures in particle physics | 20, 54, 106, 113, 122, 281, 559 | Plischke M., Bergersen B. — Equilibrium statistical physics | 82, 96, 98, 215—218, 220, 221, 223, 225, 240, 243, 295 |
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