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Decoupling gain and feedback in coherent random lasers: experiments and simulations

机译:相干随机激光器中的去耦增益和反馈:实验和仿真

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摘要

We propose and demonstrate a coherent random laser in which the randomly distributed scattering centres are placed outside the active region. This architecture is implemented by enclosing a dye solution between two agglomerations of randomly positioned titanium dioxide nanoparticles. The same spectral signature, consisting of sharp spikes with random spectral positions, is detected emerging from both ensembles of titanium dioxide nanoparticles. We interpret this newly observed behaviour as due to the optical feedback given by back-scattered light from the scattering agglomerations, which also act as output couplers. A simple model is presented to simulate the observed behaviour, considering the amplitude and phase round trip conditions that must be satisfied to sustain lasing action. Numerical simulations reproduce the experimental reports, validating our simple model. The presented results suggest a new theoretical and experimental approach for studying the complex behavior of coherent random lasers and stimulate the realization of new devices based on the proposed architecture, with different active and scattering materials.
机译:我们提出并证明了一种相干随机激光器,其中随机分布的散射中心位于有源区域之外。通过将染料溶液封装在随机放置的二氧化钛纳米颗粒的两个团聚体之间,可以实现此体系结构。从二氧化钛纳米粒子的两个集合中都检测到相同的光谱特征,包括具有随机光谱位置的尖峰。我们将这种新观察到的行为解释为归因于来自散射团聚体的反向散射光所产生的光学反馈,这些散射体也充当输出耦合器。提出了一个简单的模型来模拟观察到的行为,同时考虑了维持激光作用必须满足的幅度和相位往返条件。数值模拟再现了实验报告,验证了我们的简单模型。提出的结果为研究相干随机激光器的复杂行为提供了一种新的理论和实验方法,并刺激了基于所提出的体系结构,具有不同活性和散射材料的新器件的实现。

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