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JOURNALS // Regular and Chaotic Dynamics // Archive

Regul. Chaotic Dyn., 2021 Volume 26, Issue 2, Pages 183–204 (Mi rcd1110)

Special Issue: Nonlinear Dynamics in Chemical Sciences: Part II

On Ergodicity for Multidimensional Harmonic Oscillator Systems with Nosé – Hoover-type Thermostat

Ikuo Fukudaab, Kei Moritsuguc, Yoshifumi Fukunishid

a Institute for Protein Research, Osaka University, 565-0871 Osaka, Japan
b Graduate School of Simulation Studies, University of Hyogo, 650-0047 Kobe, Japan
c Graduate School of Medical Life Science, Yokohama City University, 230-0045 Yokohama, Japan
d Cellular and Molecular Biotechnology Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), 135-0064 Tokyo, Japan

Abstract: A simple proof and a detailed analysis of the nonergodicity for multidimensional harmonic oscillator systems with the Nosé – Hoover-type thermostat are presented. The origin of the nonergodicity is the symmetries in the multidimensional target physical system, and it differs from that in the Nosé – Hoover thermostat with the one-dimensional harmonic oscillator. A new and simple deterministic method to recover the ergodicity is also proposed. An individual thermostat variable is attached to each degree of freedom, and all of these variables act on a friction coefficient for each degree of freedom. This action is linear and controlled by a Nosé mass matrix $\mathbf{Q}$, which is the matrix analogue of the scalar Nosé mass. The matrix $\mathbf{Q}$ can break the symmetry and contribute to the ergodicity.

Keywords: ergodicity, Nosé – Hoover equation, thermostat, molecular dynamics, invariant space, multidimensional harmonic oscillator, Nosé-mass matrix, density dynamics.

MSC: 34A34, 37A10, 70F40, 82B80

Received: 17.08.2020
Accepted: 13.03.2021

Language: English

DOI: 10.1134/S1560354721020064



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