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CMOS compatible high-performance nanolasing based on perovskite-SiN hybrid integration

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arxiv 2003.13546 v1 pith:4OMQQQSF submitted 2020-03-30 physics.optics physics.app-ph

classification physics.opticsphysics.app-ph
keywords photonicsiliconcavitycoherenthigh-performancehybridintegrationlasing
verification ladder T0 review T1 audit T2 compute T3 formal
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Coherent light sources in silicon photonics are the long-sought holy grail because silicon-based materials have indirect bandgap. Traditional strategies for realizing such sources, e.g., heterogeneous photonic integration, strain engineering and nonlinear process, are technologically demanding. Here, we demonstrate a hybrid lasing device composing of perovskite nanocrystals and silicon nitride nanobeam cavity. We fabricate SiN photonic crystal naonobeam cavities on a solid substrate with significantly improved thermal and mechanical stabilities compared to conventional suspended ones. In addition, adding a PMMA-encapsulation layer on top of the SiN can significantly boost the Q-factor of the cavity mode. By dispersing perovskite nanocrystals as emitters in the PMMA layer, we obtained high-performance coherent emissions in terms of lasing threshold, linewidth and mode volumes. Our work offers a compelling way of creating solution-processed active integrated photonic devices based on the mature platform of silicon photonics for applications in optical information science and photonic quantum technology.

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