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On-chip ultrahigh-Q microcavities for highly unidirectional emission

机译:片上超高Q微腔实现高度单向发射

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Optical whispering gallery mode (WGM) microcavities are promising candidates for basic research and optoelectronic applications. Due to the isotropic emission property resulting from the rotational symmetry, traditional WGM microcavities have to rely on external couplers to excite the modes and collect their emission. One of the most possible solutions is to deform microcavities from rotational symmetry, which could provide directional emission instead of isotropic characteristic. Here we report the first experimental realization of on-chip microcavities which support both highly unidirectional emission and ultra-high Q factors. The demonstrated Q factor exceeds 100 million in near infrared. By doping erbium into the deformed microcavity, lasing action in 1550 nm band was observed under convenient free-space optical pumping, with the threshold as low as 2 μW. Remarkably, the lasing emission is along a single direction with a narrow divergence angle about 10 degrees.
机译:光回音壁模式(WGM)微腔有望成为基础研究和光电应用的候选者。由于旋转对称性导致的各向同性发射特性,传统的WGM微腔必须依靠外部耦合器来激发模式并收集其发射。最可能的解决方案之一是使微腔不对称于旋转对称,这可以提供定向发射而不是各向同性的特性。在这里,我们报告了支持微单向发射和超高Q因子的片上微腔的第一个实验实现。在近红外中,已证明的Q因子超过1亿。通过将掺杂到变形的微腔中,在方便的自由空间光泵浦下,可观察到1550 nm波段的激光作用,阈值低至2μW。显着地,激光发射沿单个方向具有约10度的窄发散角。

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