Quantum mechanical evolution of electron’s Landau state in the dissipative magnetic field

Author:

Da Cheng1ORCID,Fan Hong-Yi2

Affiliation:

1. The Interdisciplinary Center for Study on Maths, Physics and Engineering, School of Electronic Engineering, Chaohu University 1 , Hefei 238024, China

2. Department of Material Science and Engineering, University of Science and Technology of China 2 , Hefei 230026, China

Abstract

Physicists have long studied Landau states and energy levels of electrons in a stable magnetic field. However, when the magnetic field dissipates, the question of how Landau states evolve remains unanswered. This study investigates the magnetic dissipative effect from a quantum mechanics perspective. We establish a quantum master equation that describes a dissipative magnetic field. Subsequently, we solve the master equation using an entangled state representation. Consequently, we found that the Landau state evolves into a binomial quantum state (mixed state) when the magnetic field dissipated. This is in sharp contrast to the case where the Landau state becomes a negative binomial state when an additional harmonic oscillator potential is applied. We hope that this finding will be helpful for the evolution of quantized plasma physics.

Funder

Anhui Provincial Natural Science Foundation

Natural Science Foundation of the Anhui Higher Education Institutions of China

Publisher

AIP Publishing

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