论文标题
在较高温度下非线性光学元件的平面八度分子的纳米级订购
Nanoscale ordering of planar octupolar molecules for nonlinear optics at higher temperatures
论文作者
论文摘要
我们开发了在低浓度限制下的小型平面八度分子的平面系统的定向排序的方案,旨在在室温下进行非线性光学(NLO)应用。八尖晶与外部电力极点和分子间相互作用相互作用被忽略。简单的统计力学模型用于在非常弱的极限限制下分析定向顺序,这足以检索由于NLO探测器和测量链的高灵敏度,因此可以检索NLO信号。讨论了两种情况。首先,八极极性电场是通过点电荷系统赋予的。该设置受机械强度和介电击穿极限施加的与细胞相关的约束。基准测试TATB分子的非常弱的八极极顺序显示出在氦气温度下出现。第二种情况是用一小部分电动偶极成分混合的八度分子的二叠。它要求强大的野外状态在氮温度范围内有效。在高温(弱相互作用)限制形式主义中,对两种情况的非线性敏感性系数矩阵的估计估计。我们认为,系统的适度修饰,例如,八杆辅助八振体的大小增加,可以将螺栓温度提高到氮温度以上。
We develop scenarios for orientational ordering of an in-plane system of small flat octupolar molecules at the low-concentration limit, aiming towards nonlinear-optical (NLO) applications at room temperatures. The octupoles interact with external electric poling fields and intermolecular interactions are neglected. Simple statistical-mechanics models are used to analyze the orientational order in the very weak poling limit, sufficient for retrieving the NLO signals owing to the high sensitivity of NLO detectors and measurement chains. Two scenarios are discussed. Firstly, the octupolar poling field is imparted by a system of point charges; the setup is subject to cell-related constraints imposed by mechanical strength and dielectric breakdown limit. The very weak octupolar order of benchmarking TATB molecules is shown to emerge at Helium temperatures. The second scenario addresses the dipoling of octupolar molecules with a small admixture of electric dipolar component. It requires a strong field regime to become effective at Nitrogen temperature range. An estimation of the nonlinear susceptibility coefficient matrix for both scenarios is done in the high-temperature (weak interaction) limit formalism. We argue that moderate modifications of the system like, e.g., an increase of the size of the octupole, accompanied by dipole-assisted octupoling, can increase the poling temperature above Nitrogen temperatures.