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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Random lasing from dye-doped chiral nematic liquid crystals in oriented and non-oriented cells
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Random lasing from dye-doped chiral nematic liquid crystals in oriented and non-oriented cells

机译:定向和非定向细胞中染料掺杂手性向列液晶的随机激光发射

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These are the experimental results describing random lasing in dye-doped chiral nematic liquid crystals. A novel random lasing emission is studied in this article based on the helical domains of dye-doped chiral nematic liquid crystals in oriented and non-oriented cells. Under frequency doubled 532 nm Nd:YAG (yttrium aluminum garnet) laser-pumped optical excitation, we carefully observed and analysed random lasing from dye-doped chiral nematic liquid crystals with wavelength ranges from 600 nm to 620 nm. In addition, the line-width of multi-mode peaks is less than 0.2 nm. The difference between the two random lasing behaviours in the oriented and non-oriented cells arises from the fact that random lasing appearing in the oriented cell results from stronger multiple scattering of light generated by the spiral domains of the liquid crystal molecules. Furthermore, chiral nematic liquid crystal micro-domains with different orientations can induce variation of the diffusion constant, thereby resulting in a decrease or increase in the lasing intensity of the random lasers, and an increase or decrease in their energy thresholds. In addition, a detailed comparison of the two experimental results is also presented in the article, showing the dependence of the lasing threshold and the number of lasing modes on the transport mean free path, the excited area, and the sample size. This process allows us to obtain a random laser by changing the structure of the sample, realising tunable random lasers at low cost.
机译:这些是描述染料掺杂的手性向列型液晶中随机激射的实验结果。本文基于定向和非定向细胞中染料掺杂的手性向列液晶的螺旋域,研究了一种新型的随机激光发射。在532 nm Nd:YAG(钇铝石榴石)激光泵浦光激发的两倍频率下,我们仔细观察并分析了波长范围为600 nm至620 nm的染料掺杂手性向列液晶的随机激射。另外,多模峰的线宽小于0.2nm。定向单元和非定向单元中两种随机激光行为之间的差异是由于以下事实引起的:定向单元中出现的随机激光是由液晶分子的螺旋域产生的光的更强的多重散射导致的。此外,具有不同取向的手性向列液晶微区可引起扩散常数的变化,从而导致随机激光器的激光强度的减小或增大,以及它们的能量阈值的增大或减小。此外,本文还对这两个实验结果进行了详细的比较,显示了激光阈值和激光模式数量与运输平均自由程,受激面积和样本量的关系。这个过程使我们能够通过改变样品的结构来获得随机激光器,从而以低成本实现可调谐的随机激光器。

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