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Random lasing in a bistable smectic A liquid crystal

机译:随机激光在一个双稳态山型液晶

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In this work, we examine the phenomenon of random lasing from the smectic A liquid crystal phase. We summarise our results to date on random lasing from the smectic A phase including the ability to control the output from the sample using applied electric fields. In addition, diffuse random lasing is demonstrated from the electrohydrodynamic instabilities of a smectic A liquid crystal phase that has been doped with a low concentration of ionic impurities. Using a siloxane-based liquid crystal doped with ionic impurities and a laser dye, nonresonant random laser emission is observed from the highly scattering texture of the smectic A phase which is stable in zero-field. With the application of a low frequency alternating current electric field, turbulence is induced due to motion of the ions. This is accompanied by a decrease in the emission linewidth and an increase in the intensity of the laser emission. The benefit in this case is that a field is not required to maintain the texture as the scattering and homeotropic states are both stable in zero field. This offers a lower power consumption alternative to the electric-field induced static scattering sample.
机译:在这项工作中,我们研究了从麦形液晶相的随机激光的现象。我们将结果总结到迄今为止从博级的随机激光激光阶段,包括使用应用的电场控制来自样品的输出的能力。另外,弥漫性随机激光从偏晶的电液动力学稳定性证明已经掺杂具有低浓度的离子杂质的液晶相。使用掺杂有离子杂质的硅氧烷基液晶和激光染料,从诸如零场稳定的近距离的高度散射纹理观察非族化随机激光发射。随着低频交流电场的应用,由于离子的运动引起湍流。这伴随着排放线宽的减少和激光发射强度的增加。在这种情况下的利益是,由于散射和垂直状态在零场中稳定,因此不需要保护纹理。这为电场诱导的静态散射样品提供了较低的功耗替代方法。

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