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Stochasticity and Quantum Chaos : Proceedings of the 3rd Max Born Symposium, Sobótka Castle, September 15–17, 1993

معرفی کتاب «Stochasticity and Quantum Chaos : Proceedings of the 3rd Max Born Symposium, Sobótka Castle, September 15–17, 1993» نوشتهٔ N. L. Balazs (auth.), Zbigniew Haba, Wojciech Cegła, Lech Jakóbczyk (eds.)، منتشرشده توسط نشر Springer Netherlands : Imprint : Springer در سال 1995. این کتاب در فرمت pdf، زبان انگلیسی ارائه شده است.

These are the proceedings of the Third Max Born Symposium which took place at SobOtka Castle in September 1993. The Symposium is organized annually by the Institute of Theoretical Physics of the University of Wroclaw. Max Born was a student and later on an assistant at the University of Wroclaw (Wroclaw belonged to Germany at this time and was called Breslau). The topic of the Max Born Sympo­ sium varies each year reflecting the developement of theoretical physics. The subject of this Symposium "Stochasticity and quantum chaos" may well be considered as a continuation of the research interest of Max Born. Recall that Born treats his "Lectures on the mechanics of the atom" (published in 1925) as a nrst volume of a complete monograph (supposedly to be written by another person). His lectures concern the quantum mechanics of integrable systems. The quantum mechanics of non-integrable systems was the subject of the Third Max Born Symposium. It is known that classical non-integrable Hamiltonian systems show a chaotic behaviour. On the other hand quantum systems bounded in space are quasiperi­ odic. We believe that quantum systems have a reasonable classical limit. It is not clear how to reconcile the seemingly regular behaviour of quantum systems with the possible chaotic properties of their classical counterparts. The quantum proper­ ties of classically chaotic systems constitute the main subject of these Proceedings. Other topics discussed are: the quantum mechanics of dissipative systems, quantum measurement theory, the role of noise in classical and quantum systems. These are the proceedings of the Third Max Born Symposium which took place at SobOtka Castle in September 1993. The Symposium is organized annually by the Institute of Theoretical Physics of the University of Wroclaw. Max Born was a student and later on an assistant at the University of Wroclaw (Wroclaw belonged to Germany at this time and was called Breslau). The topic of the Max Born SympoƯ sium varies each year reflecting the developement of theoretical physics. The subject of this Symposium "Stochasticity and quantum chaos" may well be considered as a continuation of the research interest of Max Born. Recall that Born treats his "Lectures on the mechanics of the atom" (published in 1925) as a nrst volume of a complete monograph (supposedly to be written by another person). His lectures concern the quantum mechanics of integrable systems. The quantum mechanics of non-integrable systems was the subject of the Third Max Born Symposium. It is known that classical non-integrable Hamiltonian systems show a chaotic behaviour. On the other hand quantum systems bounded in space are quasiperiƯ odic. We believe that quantum systems have a reasonable classical limit. It is not clear how to reconcile the seemingly regular behaviour of quantum systems with the possible chaotic properties of their classical counterparts. The quantum properƯ ties of classically chaotic systems constitute the main subject of these Proceedings. Other topics discussed are: the quantum mechanics of dissipative systems, quantum measurement theory, the role of noise in classical and quantum systems Front Matter....Pages i-2 The Quantal Fattening of Fractals....Pages 3-11 How and When Quantum Phenomena Become Real....Pages 13-29 Chaotic Dynamics in a Periodically Driven Anharmonic Oscillator....Pages 31-37 Coherent and Incoherent Dynamics in a Periodically Driven Bistable System....Pages 39-55 The Ehrenfest Theorem for Markov Diffusions....Pages 57-62 The Quantum State Diffusion Model, Asymptotic Solutions, Thermal Equilibrium and Heisenberg Picture....Pages 63-71 Stochastic Representation of Quantum Dynamics....Pages 73-90 Level Repulsion and Exceptional Points....Pages 91-98 Type-II Intermittency in the Presence of Additive and Multiplicative Noise....Pages 99-113 Aspects of Liouville Integrability in Quantum Mechanics....Pages 115-121 KAM Techniques for Time Dependent Quantum Systems....Pages 123-129 Dissipation and Noise in Quantum Mechanics....Pages 131-136 Irregular Scattering, Number Theory, and Statistical Mechanics....Pages 137-148 Band Random Matrices, Kicked Rotator and Disordered Systems....Pages 149-160 Robust Scarred States....Pages 161-176 The Quasiclassical Statistical Description of Quantum Dynamical Systems and Quantum Chaos....Pages 177-183 Quantum Measurement by Quantum Brain....Pages 185-194 Time Reversal and Gaussian Measures in Quantum Physics....Pages 195-207 Stochastic Resonance in Bistable Systems with Fluctuating Barriers....Pages 209-216 Back Matter....Pages 217-226 This volume covers a wide range of problems in the quantum mechanics of non-integrable systems presented by experts in the field. The main part of the work concerns quantum chaos, and dynamical aspects of chaos in particular. Among the subjects which are treated are: periodic perturbations, small denominators in quantum mechanics, tunneling in the presence of a periodic perturbation, chaotic scattering, quantum maps, level statistics of chaotic systems and random matrices. The papers are concerned with mathematically rigorous derivations of results, as well as with their physical applications, such as scattering, ionization and tunneling. The papers discuss recent results which have not been published in book form before. All contributors present new methods to approach quantum chaos rather than extending conventional techniques. This book will be of interest to specialists in the field of dynamical systems, quantum mechanics and stochastic processes. It can also serve as an outstanding introduction to graduate and postgraduate students of theoretical physics and mathematics.
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