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Solid-state random microlasers fabricated via femtosecond laser writing

机译:通过飞秒激光写入制造的固态随机微激光器

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摘要

Here we demonstrate resonant random lasing in Rhodamine B-doped polymeric microstructures fabricated by means of femtosecond laser writing via two-photon polymerization. To the best of our knowledge, this is the first demonstration of random lasing action in on-chip microdevices. Their feedback mechanism relies on diffuse reflections at the structure sidewall surfaces, which is known as spatially localized feedback since the scattering centers lie over the edges of the gain medium. By exciting the structures with a pulsed laser at 532 nm, a multimode emission with randomly distributed narrow peaks was observed, in accordance with the random nature of the feedback mechanism. Interestingly, their lasing threshold was found to be on the order of tens of nanojoules, which is comparable to what had been achieved for usual microcavities, thereby demonstrating the potentiality of these devices as solid-state lasers for integrated optics applications.
机译:在这里,我们证明了通过飞秒激光写入通过双光子聚合制备的若丹明B掺杂的聚合物微结构中的共振随机激射。据我们所知,这是片上微型设备中随机激射作用的首次演示。它们的反馈机制依赖于结构侧壁表面的漫反射,这被称为空间局部反馈,因为散射中心位于增益介质的边缘上。根据反馈机制的随机性,通过用532 nm的脉冲激光激发结构,观察到了具有随机分布的窄峰的多模发射。有趣的是,发现它们的激射阈值约为数十纳焦耳,与通常的微腔所达到的相当,从而证明了这些器件作为集成光学应用中的固态激光器的潜力。

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