Hidden Nambu mechanics II: Quantum/semiclassical dynamics

Author:

Horikoshi Atsushi1

Affiliation:

1. Department of Natural Sciences, Tokyo City University, Tokyo 158-8557, Japan

Abstract

Abstract Nambu mechanics is a generalized Hamiltonian dynamics characterized by an extended phase space and multiple Hamiltonians. In a previous paper [Prog. Theor. Exp. Phys. 2013, 073A01 (2013)] we revealed that the Nambu mechanical structure is hidden in Hamiltonian dynamics, that is, the classical time evolution of variables including redundant degrees of freedom can be formulated as Nambu mechanics. In the present paper we show that the Nambu mechanical structure is also hidden in some quantum or semiclassical dynamics, that is, in some cases the quantum or semiclassical time evolution of expectation values of quantum mechanical operators, including composite operators, can be formulated as Nambu mechanics. We present a procedure to find hidden Nambu structures in quantum/semiclassical systems of one degree of freedom, and give two examples: the exact quantum dynamics of a harmonic oscillator, and semiclassical wave packet dynamics. Our formalism can be extended to many-degrees-of-freedom systems; however, there is a serious difficulty in this case due to interactions between degrees of freedom. To illustrate our formalism we present two sets of numerical results on semiclassical dynamics: from a one-dimensional metastable potential model and a simplified Henon–Heiles model of two interacting oscillators.

Publisher

Oxford University Press (OUP)

Subject

General Physics and Astronomy

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Shadow Hamiltonians of Structure-Preserving Integrators for Nambu Mechanics;Progress of Theoretical and Experimental Physics;2024-05

2. Nambu dynamics and its noncanonical Hamiltonian representation in many degrees of freedom systems;Progress of Theoretical and Experimental Physics;2021-06-14

3. Generalization of Hamiltonian mechanics to a three-dimensional phase space;Progress of Theoretical and Experimental Physics;2021-05-21

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