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耗散二能级系统中的密度矩阵与纯度演化:I. 隧穿动力学的理论与路径积分结果

Density matrix and purity evolution in dissipative two-level systems: I. Theory and path integral results for tunneling dynamics.

作者信息

Chatterjee Sambarta, Makri Nancy

机构信息

Department of Chemistry, University of Illinois, Urbana, IL 61801, USA.

出版信息

Phys Chem Chem Phys. 2021 Mar 11;23(9):5113-5124. doi: 10.1039/d0cp05527a.

Abstract

The time evolution of the purity (the trace of the square of the reduced density matrix) and von Neumann entropy in a symmetric two-level system coupled to a dissipative harmonic bath is investigated through analytical arguments and accurate path integral calculations on simple models and the singly excited bacteriochlorophyll dimer. A simple theoretical analysis establishes bounds and limiting behaviors. The contributions to purity from a purely incoherent term obtained from the diagonal elements of the reduced density matrix, a term associated with the difference of the two eigenstate populations, and a third term related to the square of the time derivative of a site population, are discussed in various regimes. In the case of tunneling dynamics from a localized initial condition, the complex interplay among these contributions leads to the recovery of purity under low-temperature, weakly dissipative conditions. Memory effects from the bath are found to play a critical role to the dynamics of purity. It is shown that the strictly quantum mechanical decoherence process associated with spontaneous phonon emission is responsible for the long-time recovery of purity. These analytical and numerical results show clearly that the loss of quantum coherence during the evolution toward equilibrium does not necessarily imply the decay of purity, and that the time scales relevant to these two processes may be entirely different.

摘要

通过对简单模型和单激发细菌叶绿素二聚体进行解析论证和精确的路径积分计算,研究了与耗散性谐波浴耦合的对称两能级系统中纯度(约化密度矩阵平方的迹)和冯·诺依曼熵的时间演化。一个简单的理论分析确定了边界和极限行为。讨论了在各种情况下,由约化密度矩阵对角元素得到的纯非相干项、与两个本征态布居数之差相关的项以及与一个位点布居数时间导数平方相关的第三项对纯度的贡献。在从局域初始条件出发的隧穿动力学情况下,这些贡献之间复杂的相互作用导致在低温、弱耗散条件下纯度的恢复。发现浴的记忆效应在纯度动力学中起着关键作用。结果表明,与自发声子发射相关的严格量子力学退相干过程是纯度长时间恢复的原因。这些解析和数值结果清楚地表明,在向平衡演化过程中量子相干性的丧失并不一定意味着纯度的衰减,而且与这两个过程相关的时间尺度可能完全不同。

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