Joint Institute for Nuclear Research, 141980 Dubna, Russia.
Physics Department, Yerevan State University, 0001-0099 Yerevan, Armenia.
Phys Rev E. 2018 Mar;97(3-1):032134. doi: 10.1103/PhysRevE.97.032134.
Employing the fermionic and bosonic Hamiltonians for the collective oscillator linearly FC-coupled with several heat baths, the analytical expressions for the collective occupation number are derived within the non-Markovian quantum Langevin approach. The master equations for the occupation number of collective subsystem are derived and discussed. In the case of Ohmic dissipation with Lorenzian cutoffs, the possibility of reduction of the system with several heat baths to the system with one heat bath is analytically demonstrated. For the fermionic and bosonic systems, a comparative analysis is performed between the collective subsystem coupled to two heat baths and the reference case of the subsystem coupled to one bath.
采用线性全同耦合(FC)若干热浴的集体振子的费米子和玻色子哈密顿量,在非马尔可夫量子朗之万方法下推导出了集体占据数的解析表达式。推导并讨论了集体子系统占据数的主方程。在洛伦兹截止的欧姆耗散情况下,从理论上证明了多个热浴系统可以简化为一个热浴系统的可能性。对于费米子和玻色子系统,对比分析了与两个热浴耦合的集体子系统和与一个热浴耦合的参考情况。