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Kinetic Monte Carlo simulations for birefringence relaxation of photo-switchable molecules on a surface

机译:用于表面上光可切换分子的双折射松弛的动力学蒙特卡洛模拟

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Recent experiments have demonstrated that in a dense monolayer of photo-switchable dye methyl-red molecules the relaxation of an initial birefringence follows a power-law decay, typical for glass-like dynamics. The slow relaxation can efficiently be controlled and accelerated by illuminating the monolayer with circularly polarized light, which induces trans-cis isomerization cycles. To elucidate the microscopic mechanism, we develop a two-dimensional molecular model in which the trans and cis isomers are represented by straight and bent needles, respectively. As in the experimental system, the needles are allowed to rotate and to form overlaps but they cannot translate. The out-of-equilibrium rotational dynamics of the needles is generated using kinetic Monte Carlo simulations. We demonstrate that, in a regime of high density and low temperature, the power-law relaxation can be traced to the formation of spatio-temporal correlations in the rotational dynamics, i.e., dynamic heterogeneity. We also show that the nearly isotropic cis isomers can prevent dynamic heterogeneity from forming in the monolayer and that the relaxation then becomes exponential. (C) 2016 AIP Publishing LLC.
机译:最近的实验表明,在光可转换的染料甲基红色分子的致密单层中,初始双折射的弛豫遵循幂律衰减,这是玻璃状动力学的典型特征。通过用圆偏振光照射单层,可以有效地控制和加速慢弛豫,从而诱导反式-顺式异构化循环。为了阐明微观机制,我们开发了二维分子模型,其中反式和顺式异构体分别由直针和弯针表示。像在实验系统中一样,针可以旋转并形成重叠,但不能平移。针的失衡旋转动力学是使用动力学蒙特卡洛模拟生成的。我们证明,在高密度和低温状态下,幂律弛豫可以追溯到旋转动力学即动态异质性的时空相关性的形成。我们还表明,几乎各向同性的顺式异构体可以防止动态异质性在单层中形成,并且弛豫然后变为指数。 (C)2016 AIP出版有限责任公司。

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