Книга | Страницы для поиска |
Arveson W. — An Invitation to C-Algebras | 29 |
Wegge-Olsen N.E. — K-Theory and C*-Algebras: a friendly approach | T.5.7f, T.6.13 |
Streater R.S., Wightman A.S. — PCT, Spin and Statistics, and All That | 4 (ftnt) |
Chebotarev A.M. — Lectures on quantum probability | 18 |
Connes A. — Noncommutative geometry | V.2 |
Majid S. — Foundations of Quantum Group Theory | 195, 201, 203 |
Liboff R. — Kinetic Theory | 341, 397, 398, 432 |
Landsman N.P. — Mathematical topics between classical and quantum mechanics | 3, 61 |
Mukamel S. — Principles of Nonlinear Optical Spectroscopy | 47, 49t, 52, 136, 159 |
Pedersen G.K. — C*-algebras and their automorphism groups | 69 |
Honerkamp J. — Statistical Physics | 214 |
Bovier A., Gill R. (Ed), Ripley B.D. (Ed) — Statistical Mechanics of Disordered Systems: A Mathematical Perspective | 178 |
Gracia-Bondia J.M., Varilly J.C., Figueroa H. — Elements of Noncommutative Geometry | 8, 30, 391 |
Arveson W. — A Short Course on Spectral Theory | 120 |
Atiyah M. — Representation Theory of Lie Groups | 152, 166 |
Araki H. — Mathematical Theory of Quantum Fields | 10 |
Thaller B. — Visual quantum mechanics | 67, 104 |
Simon B. — The Statistical Mechanics of Lattice Gases (vol 1) | 283 |
Zagoskin A.M. — Quantum theory of many-body systems | 95 |
Eschrig H. — The Fundamentals of Density Functional Theory | 35 |
Streater R.F. (Ed) — Mathematics of Contemporary Physics | 2, 4, 14, 57, 58, 59, 146, 193 |
Isihara A. — Statistical physics | 279 |
Rammer J. — Quantum transport theory | 70 |
Ziman J.M. — Elements of Advanced Quantum Theory | 97, 105 |
Szekeres P. — A Course in Modern Mathematical Physics: Groups, Hilbert Space and Differential Geometry | 399 |
Mukamel S. — Principles of nonlinear spectroscopy | 47, 49t, 52, 136, 159 |
van Eijndhoven S.J.L., de Greef J. — Trajectory Spaces, Generalized Functions and Llnbounded Operators | 199 |
Bethe H.A., Jackiw R. — Intermediate Quantum Mechanics | 287 |
Yamamoto Y., Imamoglu A. — Mesoscopic quantum optics | 2 |
Sakai S. — C*-algebras and W*-algebras | 53 |
Fulling S. — Aspects of Quantum Field Theory in Curved Spacetime | 3 |
Gardiner C.W., Zoller P. — Quantum Noise: A Handbook of Markovian and Non-Markovian Quantum Stochastic Methods with Applications to Quantum Optics | 22 |
Bogolubov N.N., Logunov A.A., Todorov I.T. — Introduction to Axiomatic Quantum Field Theory | 591 |
Greiner W. — Quantum mechanics: special chapters | 255 |
Doran R.S., Wichmann J. — Approximate Identities and Factorization in Banach Modules | 243 |
Prigogine I. — From being to becoming: time and complexity in the physical sciences. | see “pure case” |
Basdevant J.-L., Dalibard J. — Quantum Mechanics | 436 |
Wald R.M. — Quantum field theory in curved spacetime and black hole thermodynamics | 83, 84—85 |
Auletta G. — Foundations and Interpretation of Quantum Mechanics | 41, 51 |
Klyshko D.N. — Photons and nonlinear optics | 137 |
Gardiner C.W. — Quantum Noise | 22 |
Pavičić M. — Quantum Computation and Quantum Communication: Theory and Experiments | 28, 40 |
Barut A.O., Raczka R. — Theory of Group Representations and Applications | 395 |
Ya Helemskii A., West A. — Banach and locally convex algebras | 319 |
Messiah A. — Quantum mechanics. Volume 1 | 205, 335—336 |
Amari S.-I., Nagaoka H. — Methods of Information Geometry | 146 |
Barnett S.M., Radmore P.M. — Methods in Theoretical Quantum Optics | 7, 8, 10, 37, 87—89, 118, 119, 126, 174 |
Handelman D.E. — Positive Polynomials, Convex Integral Polytopes, and a Random Walk Problem | 18, 25, 26, 35, 38, 39, 42—47, 52, 58, 70, 72—76, 80, 81, 84, see also "State" |
Puri P.R. — Mathematical methods of quantum optics | 22 |
Amrein W.O., Sinha K.B., Jauch J.M. — Scattering Theory in Quantum Mechanics: Physical Principles and Mathematical Methods | 103 |
Kemble E. C. — The fundamental principles of quantum mechanics | (see Pure case assemblage) |
Weaver N. — Lipschitz Algebras | 113 |
Greiner W., Neise L., Stöcker H. — Thermodynamics and statistical mechanics | 261 |
Amelino-Camelia G., Kowalski-Glikman J. — Planck Scale Effects in Astrophysics and Cosmology (Lecture Notes in Physics) | 252, 289 |
Zeidler E. — Applied Functional Analysis: Applications to Mathematical Physics | 358 |
Greiner W., Neise L., Stocker H. — Thermodynamics and statistical mechanics | 261 |
Haag R. — Local quantum physics: fields, particles, algebras | 4 |
Giles R. — Mathematical foundation of thermodynamics | 18, 67, 228 |
Glimm J., Jaffe A. — Quantum Physics: A Functional Integral Point of View | see "State", "Phase", "Equilibrium state" |
Breuer H.-P., Petruccione F. — The Theory of Open Quantum Systems | 68 |
Mackey G. — Unitary Group Representations in Physics, Probability and Number Theory | 165 |
Honerkamp J. — Statistical physics: an advanced approach with applications | 214 |
Bruss D. (ed.), Leuchs G. (ed.) — Lectures on Quantum Information | 485, 495 |