大学物理2024,Vol.43Issue(4) :22-25,35.DOI:10.16854/j.cnki.1000-0712.230193

两个耦合驱动谐振子精确的经典与量子动力学研究

Study on exact classical and quantum dynamics of two coupled driven harmonic oscillators

陈康康 李海凤 欧智敏 张凯峰
大学物理2024,Vol.43Issue(4) :22-25,35.DOI:10.16854/j.cnki.1000-0712.230193

两个耦合驱动谐振子精确的经典与量子动力学研究

Study on exact classical and quantum dynamics of two coupled driven harmonic oscillators

陈康康 1李海凤 1欧智敏 1张凯峰1
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作者信息

  • 1. 西安工业大学基础学院物理系,陕西西安 710021
  • 折叠

摘要

谐振子模型作为一类可严格解析求解的体系,在物理学中占据重要地位,是描述许多物理过程非常有力的理论模型,而关于驱动谐振子的研究却较少涉及.本文研究了两个耦合驱动谐振子模型精确的经典与量子动力学.在经典力学框架下利用哈密顿正则方程给出含时驱动外场作用在两个耦合谐振子体系的精确能量值.在量子力学框架下考虑非含时驱动外场,给出系统的能量本征值和对应的本征态.考虑含时驱动外场,利用算子代数方法得到该量子体系t时刻的波函数和对应的能量期望值.由于在量子力学框架下微观粒子具有波粒二象性,因此两个驱动耦合谐振子体系的经典与量子动力学存在明显差异.

Abstract

The harmonic oscillator model,which can be analytically solved,takes an important part in physics and is a powerful theoretical model for describing many physical processes.However,the research on driven har-monic oscillator is rarely involved.In this paper,we study the exact classical and quantum dynamics of two coupled harmonic oscillators in the driving external fields.In the framework of classical mechanics,the exact energy values of the time-dependent external fields acting on two coupled harmonic oscillator systems are obtained by virtue of the Hamiltonian canonical equations.If the driven fields are constant,the energy eigenvalues and eigenstates of the system in quantum mechanics are attained.In consideration of the time-dependent driven fields,the expected ener-gy values and wave function of quantum system are derived using operator algebra methods.Because the microscop-ic particles have wave-particle duality within the framework of quantum mechanics,there are obvious differences between the classical and quantum dynamics for the system consisted of the two coupled harmonic oscillators in the external driving fields.

关键词

两个耦合谐振子/含时驱动外场/经典动力学/量子动力学

Key words

two coupled harmonic oscillators/time-dependent driven field/classical dynamics/quantum dy-namics

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基金项目

国家自然科学基金(21703166)

陕西省自然科学基础研究计划(2023-JC-QN-0151)

西安工业大学研究生课程思政建设项目(XAGDYJ220511)

出版年

2024
大学物理
中国物理学会

大学物理

影响因子:0.333
ISSN:1000-0712
参考文献量2
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