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Complex Dynamics of Photoinduced Mass Transport and Surface Relief Gratings Formation

机译:光致传质和表面浮雕光栅形成的复杂动力学

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摘要

The microscopic and semi-macroscopic mechanisms responsible for photoinduced mass transport in functionalized azo-polymers are far from deeply understood. To get some insight into those mechanisms on “microscopic” scale, we studied the directed photoinduced motion of single functionalized polymer chains under various types of polarized light illumination using Monte Carlo bond fluctuation model and our kinetic Monte Carlo model for photoinduced mass transport. We found sub-diffusive, diffusive and super-diffusive regimes of the dynamics of single chains at constant illumination and mostly super-diffusive regime for directed motion in the presence of the gradient of light intensity. This regime is more enhanced for long than for short chains and it approaches the ballistic limit for very long chains. We propose a physical picture of light-driven inscription of Surface Relief Gratings (SRG) as corresponding to a dynamical coexistence of normal and anomalous diffusion in various parts of the system. A simple continuous time random walk model of SRG inscription based on this physical picture reproduced the light-driven mass transport found in experiments as well as the fine structure of SRG.
机译:在功能化的偶氮聚合物中负责光致传质的微观和半宏观机理远未得到深刻理解。为了对“微观”尺度上的那些机理有一些了解,我们使用蒙特卡洛键涨落模型和动力学蒙特卡洛模型对光诱导质量传输进行了研究,研究了各种类型的偏振光下单官能化聚合物链的定向光诱导运动。我们发现了在恒定光照下单链动力学的亚扩散,扩散和超扩散机制,并且在存在光强度梯度的情况下,定向运动大多为超扩散机制。与短链相比,长久而言,这种机制得到了更大的增强,并且对于非常长的链,它接近了弹道极限。我们提出了一个光驱表面浮雕光栅(SRG)的物理图像,该图像对应于系统各个部分中正常扩散和异常扩散的动态共存。基于此物理图片的SRG铭文的简单连续时间随机游走模型再现了实验中发现的光驱动质量传递以及SRG的精细结构。

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