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Random lasing in dye doped nematic liquid crystals: the role of confinement geometry

机译:在染料中随机激光掺杂向列液晶:限制几何的作用

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The first experimental evidence of random laser action in a partially ordered, dye doped nematic liquid crystal with long-range dielectric tensor fluctuations is reported. Above a given pump power the fluorescence curve collapses and discrete sharp peaks emerge above the residual spontaneous emission spectrum. The spectral linewidth of these emission peaks is narrow banded, typically around 0.5nm. The unexpected surviving of interference effects in recurrent multiple scattering of the emitted photons provide the required optical feedback for lasing in nematic liquid crystalline materials. Light waves coherent backscattering in orientationally ordered nematics manifests a weak localization, strongly supporting the diffusive laser action phenomenon in the presence of a gain medium. Unlike distributed feedback mirror-less laser, this system can be considered as a cavity-less microlaser where the disorder unexpectedly plays the most important role, behaving as randomly distributed feedback laser. The far field spatial distribution of the emission intensity shows a huge number of bright tiny spots spatially overlapped and the intensity of each pulse strongly fluctuates in time and space. Here, we report the main characteristics of this novel systems for various confinement geometries and under different conditions. A brief presentation of boundary-less systems such as free standing and freely suspended dye doped nematic films and droplets is also introduced, revealing unique emission features because of the complete absence of confining borders.
机译:据报道,在部分有序的染料中随机激光作用的第一种实验证据,报道了具有远程介电张力波动的掺杂向掺杂的向列液晶。在给定的泵之上,荧光曲线塌陷和离散尖峰出现在残余的自发发射光谱上方。这些发射峰的光谱线宽是窄条的,通常为0.5nm。在发射的光子的复发多次散射中发生的发生干扰效应的意外存活提供了用于在向列液晶材料中激光的所需光反馈。光波在定位有序的线野中相干反向散射体现了弱本地化,强烈地支持增益介质存在下的扩散激光动作现象。与分布式反馈镜面不那么激光,该系统可以被认为是腔体的微升沉,其中疾病意外地发挥着最重要的作用,表现为随机分布的反馈激光。发射强度的远场空间分布显示了空间上重叠的大量亮斑,每个脉冲的强度在时间和空间中强烈波动。在这里,我们报告了这种新颖系统的主要特征,适用于各种限制几何形状以及在不同的条件下。还引入了诸如自由稳定和自由悬浮的掺杂向列膜和液滴之类的边界系统的简要介绍,揭示了独特的排放特征,因为完全没有限制边界。

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