Makri Nancy
Department of Chemistry, University of Illinois, Urbana, Illinois 61801, United States.
Department of Physics, University of Illinois, Urbana, Illinois 61801, United States.
J Phys Chem Lett. 2024 Sep 26;15(38):9766-9773. doi: 10.1021/acs.jpclett.4c02213. Epub 2024 Sep 18.
Fully quantum mechanical real-time path integral calculations on a two-level system (TLS) interacting with a simple or composite anharmonic bath are presented. The bath consists of a few or many units, each comprising two or three electronic states coupled to secondary harmonic vibrational baths. The primitive harmonic bath approximation leads to qualitatively wrong system dynamics at high temperatures, while the effective harmonic bath mapping becomes exact in the macroscopic bath limit. Significant deviations are observed when the number of bath units is small, including skewing and blue shifts in the population oscillations and enhanced or suppressed coherence. These effects reflect the essential anharmonic character of the bath and cannot be captured by harmonic bath treatments.
本文给出了在一个与简单或复合非谐浴相互作用的两能级系统(TLS)上进行的全量子力学实时路径积分计算。该浴由几个或许多单元组成,每个单元包含两个或三个与二次谐波振动浴耦合的电子态。原始谐波浴近似在高温下会导致定性错误的系统动力学,而有效谐波浴映射在宏观浴极限下变得精确。当浴单元数量较少时,会观察到显著偏差,包括布居振荡中的偏斜和蓝移以及相干性的增强或抑制。这些效应反映了浴的基本非谐特性,谐波浴处理无法捕捉到这些效应。