论文标题

液晶微柱中的散射辅助和逻辑控制的WGM激光

Scattering-assisted and logic-controllable WGM laser in liquid crystal micropillar

论文作者

Zhang, Jin Chuan, Zhu, Hong Yang, Zhu, Xiao Mei, Zhang, Yan Li, Wang, Zhao, Chen, Fei Liang, Li, Ke, Li, Xiao Feng, Zhang, Wei Li

论文摘要

耳语画廊模式(WGM)微博可以有效地储存和操纵光线较强的光限制和长光子寿命,而将光耦合到WGM的耦合却被其旋转对称性的独特特征所固有地阻碍。在这里,提出了散射辅助的液晶(LC)微柱WGM激光。在微柱面的荧光散射显然可以增强微柱表面的WGM激光。此外,LC分子的弱散射还可以在激光模式和基于微柱的波导的轴向传输模式之间建立有效的耦合通道,从而提供了一个全合一的液体WGM激光器,具有自种和自引导的功能。此外,基于在热力相互作用下电锚定的LC分子的滞后特性,提出了可擦除的读取液液体存储器,为在光学存储中应用逻辑控制WGM激光器的应用铺平了道路。

Whispering gallery mode (WGM) microcavities can efficiently store and manipulate light with strong light confinement and long photon lifetime, while coupling light into and from WGMs is intrinsically hindered by their unique feature of rotational symmetry. Here, a scattering-assisted liquid crystal (LC) micropillar WGM laser is proposed. WGM lasing at the surface of the micropillar is obviously enhanced by fluorescence scattering in the core of the micropillar. Besides, weak scattering of LC molecules also builds efficient coupling channels between the laser modes and the axial transmission modes of the micropillar-based waveguide, providing an all-in-one liquid WGM laser with functions of self-seeding and self-guiding. Furthermore, based on the hysteresis characteristics of the electrically anchored LC molecules under the interaction of thermal force, an erasable read-write liquid memory device is proposed, paving the way for the application of logic-controllable WGM lasers in optical storage and optical control.

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