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A molecular dynamics simulation study of the nonlinear optical response of liquid crystalline systems

机译:液晶系统非线性光学响应的​​分子动力学模拟研究

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We investigated the third-order nonlinear optical response of a Gay-Berne system at the isotropic, nematic, and smectic phases by molecular dynamics simulation. The components of the optical response were calculated for the three different axes with respect to the director of the system, separately. In the nematic phase, in particular, we observed that the response function does not vanish at long times. This means that the orientation of the director of the system is permanently changed by an instant irradiation of polarized light, as a result of third-order nonlinear optical response. In the smectic phase, however, all the components of the response function decay quickly. Our results give a theoretical background at molecular level on the interpretation of the reported experimental observations of peculiar dynamics of liquid crystalline systems at irradiation of laser lights.
机译:我们通过分子动力学模拟研究了在各向同性,向列和椎相色谱柱上的同性恋系统的三阶非线性光学响应。单独地计算用于三个不同轴的三个不同轴的光学响应的​​组件。在向列法中,特别是我们观察到响应功能长时间不会消失。这意味着由于三阶非线性光学响应,通过偏振光的即时照射永久地改变系统的导向器的方向。然而,在近级阶段,响应函数的所有组分迅速衰减。我们的结果为分子水平提供了一个理论背景,用于解释报告的液晶系统在激光灯照射时的特殊动态的实验性观察。

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