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Beaming random lasers with soliton control

机译:带孤子控制的随机激光束

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摘要

Random lasers are resonator-less light sources where feedback stems from recurrent scattering at the expense of spatial profile and directionality. Suitably-doped nematic liquid crystals can random lase when optically pumped near resonance(s); moreover, through molecular reorientation within the transparency region, they support self-guided optical spatial solitons, i.e., light-induced waveguides. Here, we synergistically combine solitons and collinear pumping in weakly scattering dye-doped nematic liquid crystals, whereby random lasing and self-confinement concur to beaming the emission, with several improved features: all-optical switching driven by a low-power input, laser directionality and smooth output profile with high-conversion efficiency, externally controlled angular steering. Such effects make soliton-assisted random lasers an outstanding route towards application-oriented random lasers.
机译:随机激光器是无谐振器的光源,其中的反馈来自循环散射,但以空间分布和方向性为代价。当在共振附近进行光泵浦时,适当掺杂的向列液晶会随机发散。此外,通过在透明区域内的分子重新定向,它们支持自导光学空间孤子,即光诱导波导。在这里,我们在弱散射染料掺杂的向列液晶中协同结合了孤子和共线泵浦,从而使随机激光和自束缚射束出光束,并具有几个改进的功能:由低功率输入驱动的全光开关,激光方向性和平稳的输出轮廓,具有高转换效率,外部控制的角度转向。这种效应使孤子辅助随机激光器成为通向面向应用的随机激光器的绝妙途径。

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