首页> 外文期刊>The European physical journal, B. Condensed matter physics >Noise-induced optical bistability and state transitions in spin-crossover solids with delayed feedback
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Noise-induced optical bistability and state transitions in spin-crossover solids with delayed feedback

机译:自旋交越固体中噪声引起的光学双稳性和状态转换,具有延迟反馈

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摘要

Considering the time-delayed feedback and environmental perturbations in spin-crossover system, we construct a stochastic delayed differential equation to study the state transitions from the low spin (LS) state to the high spin (HS) state in spin-crossover solids. It is shown that the delayed feedback and noise can induce optical bistability and state transitions. The mean first-passage time (MFPT) of the transition from the LS state to the HS state as the function of the noise intensity exhibits a maximum, and the noise-enhanced stability is observed. However the MFPT decreases with increase of the delayed feedback intensity, thus the delayed feedback accelerates the conversion from the LS state to the HS state.
机译:考虑到自旋交越系统中的时滞反馈和环境扰动,我们构造了一个随机时滞微分方程来研究自旋交越固体中从低自旋(LS)态到高自旋(HS)态的状态转换。结果表明,延迟的反馈和噪声会引起光学双稳态和状态转换。从LS状态到HS状态的平均首次通过时间(MFPT),随噪声强度的变化而变化最大,观察到了噪声增强的稳定性。但是,MFPT随着延迟反馈强度的增加而降低,因此延迟反馈会加速从LS状态到HS状态的转换。

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