Towards the Resolution of a Quantized Chaotic Phase-Space: The Interplay of Dynamics with Noise

Author:

Lippolis Domenico1ORCID,Shudo Akira2ORCID

Affiliation:

1. Institute for Applied Systems Analysis, Jiangsu University, Zhenjiang 212013, China

2. Department of Physics, Tokyo Metropolitan University, Minami-Osawa, Hachioji 192-0397, Tokyo, Japan

Abstract

We outline formal and physical similarities between the quantum dynamics of open systems and the mesoscopic description of classical systems affected by weak noise. The main tool of our interest is the dissipative Wigner equation, which, for suitable timescales, becomes analogous to the Fokker–Planck equation describing classical advection and diffusion. This correspondence allows, in principle, to surmise a finite resolution, other than the Planck scale, for the quantized state space of the open system, particularly meaningful when the latter underlies chaotic classical dynamics. We provide representative examples of the quantum-stochastic parallel with noisy Hopf cycles and Van der Pol-type oscillators.

Funder

NSF China

Publisher

MDPI AG

Subject

General Physics and Astronomy

Reference25 articles.

1. Sub-Planck structure in phase space and its relevance for quantum decoherence;Zurek;Nature,2001

2. Breuer, H.-P., and Petruccione, F. (2007). The Theory of Open Quantum Systems, Oxford University Press.

3. Zubairy, M.S., and Scully, M.O. (1997). Quantum Optics, Cambridge University Press.

4. Gardiner, C.W., and Zoller, P. (2004). Quantum Noise, Springer.

5. The theory of a general quantum system interacting with a linear dissipative system;Feynman;Ann. Phys.,1963

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