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Monolithic crystalline cladding microstructures for efficient light guiding and beam manipulation in passive and active regimes

机译:用于被动和主动状态下有效导光和光束操纵的整体式晶体熔覆微结构

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Miniature laser sources with on-demand beam features are desirable devices for a broad range of photonic applications. Lasing based on direct-pump of miniaturized waveguiding active structures offers a low-cost but intriguing solution for compact light-emitting devices. In this work, we demonstrate a novel family of three dimensional (3D) photonic microstructures monolithically integrated in a Nd:YAG laser crystal wafer. They are produced by the femtosecond laser writing, capable of simultaneous light waveguiding and beam manipulation. In these guiding systems, tailoring of laser modes by both passive/active beam splitting and ring-shaped transformation are achieved by an appropriate design of refractive index patterns. Integration of graphene thin-layer as saturable absorber in the 3D laser structures allows for efficient passive Q-switching of tailored laser radiations which may enable miniature waveguiding lasers for broader applications. Our results pave a way to construct complex integrated passive and active laser circuits in dielectric crystals by using femtosecond laser written monolithic photonic chips.
机译:具有按需光束特征的微型激光源是广泛的光子应用中的理想设备。基于微型泵浦有源结构直接泵浦的激射为紧凑型发光器件提供了一种低成本但有趣的解决方案。在这项工作中,我们展示了一个新颖的三维(3D)光子微结构家族,它们整体集成在Nd:YAG激光晶体晶片中。它们是由飞秒激光写入产生的,能够同时进行光波导和光束操纵。在这些引导系统中,通过适当设计折射率图案,可以通过无源/有源光束分裂和环形变换来调整激光模式。将石墨烯薄层作为可饱和吸收剂集成到3D激光结构中,可以对定制的激光辐射进行有效的被动Q转换,从而可以使微型波导激光器用于更广泛的应用。我们的结果为通过使用飞秒激光写入的单片光子芯片在电介质晶体中构建复杂的集成无源和有源激光电路铺平了道路。

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