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Carrier-envelope phase measurement by all-optical poling with a polar side-chain polymer

机译:极性侧链聚合物通过全光极化进行载流子相测量

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摘要

Dependence of all-optical poling efficiency on carrier-envelope phase (CEP) could be measured using photoisomerization of dye molecules which are covalently bound to a polymer main chain and have large difference in static dipole moment between the ground state and excited state. Increased chromophore density leads to an order of magnitude reduction in signal-detection time from a dye doped polymer. Analysis of all-optical poling experiments with CEP changes clearly showed the presence of polarization restoring force to zero polarization. This enables resetting of SH activity in the all-optical poling process to be used for fast response loop of CEP stabilization. Phenomenological model could explain well the difference in the growth-and-decay dynamics of poling between sample of dye doped in polymer studied previously and that grafted to a polymer main chain used in the present paper.
机译:全光极化效率对载体-包封相(CEP)的依赖性可以使用染料分子的光异构化来测量,该染料分子与聚合物主链共价结合,并且在基态和激发态之间的静态偶极矩差异很大。发色团密度的增加导致染料掺杂聚合物的信号检测时间减少一个数量级。 CEP变化的全光极化实验分析清楚地显示了极化恢复力为零极化的情况。这使得能够在全光极化过程中重置SH活动,以用于CEP稳定的快速响应循环。现象学模型可以很好地解释先前研究的掺杂在聚合物中的染料样品与接枝到本文使用的聚合物主链之间的极化增长和衰变动力学的差异。

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