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首页> 外文期刊>Journal of the Physical Society of Japan >Monte Carlo Simulation for the Macroscopic Phase Separation in Photo-induced Low-spin to High-spin State Transitions
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Monte Carlo Simulation for the Macroscopic Phase Separation in Photo-induced Low-spin to High-spin State Transitions

机译:蒙特卡罗模拟在光诱导的低自旋向高自旋状态转变中的宏观相分离

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摘要

Photo-induced cooperative low-spin (LS) to high-spin (HS) conversion phenomena are studied on the basis of a model which includes the long range interaction between complexes originated from the coupling with the acoustic phonons. A short range interaction which mimics the coupling with the optical phonons is also included. The Monte Carlo simulation method is applied in the two- and the three-dimensional cases. It is pointed out that the macroscopic phase separation of HS and LS domains during the conversion process is caused by the volume striction effect through the coupling with acoustic modes. A quantity which describes the coexistence condition of two phases in the photo-induced conversion process is presented. Other characteristic features observed in experiments; the existence of the threshold intensity and the incubation time are also reproduced. The abrupt step-like conversion observed in experiments is ascribed to the de-pinning effect of the volume striction.
机译:在一个模型的基础上研究了光诱导协同低自旋(LS)到高自旋(HS)转换现象,该模型包括与声子耦合产生的配合物之间的长距离相互作用。还包括模仿与声子耦合的短程相互作用。蒙特卡罗模拟方法应用于二维和三维情况。指出在转换过程中,HS和LS域的宏观相分离是由声波耦合引起的体积约束效应引起的。提出了描述光诱导转化过程中两相共存条件的量。实验中观察到的其他特征;阈值强度的存在和潜伏时间也被再现。实验中观察到的突然的阶梯状转化归因于体积收缩的去钉作用。

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