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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Non-contact surface grating coupling for arrays of atom-photonic devices
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Non-contact surface grating coupling for arrays of atom-photonic devices

机译:用于原子光子器件阵列的非接触表面光栅联轴器

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摘要

For future atom-photonic devices, the incoupling method is expected to become the main bottleneck in the scal ing of the number of devices, as current devices use side-coupling, which is restricted to the sample edges. This paper describes how light from above is coupled directly from free space into a freestanding membrane of 220 nm thin silicon nitrite (Si3N4) with surface grating couplers. The design for these couplers is modeled, captured in an elegant design formula, and experimentally tested. A coupling efficiency of 12% makes experimental coupling to an array of atom-photonic devices possible. The elegant design formula makes grating design straightforward for all-dielectric materials and wavelengths. For this formula, determination of the correct effective index of t he specific waveguide mode inside the grating layer is essential. (C) 2020 Optical Society of America
机译:对于未来的原子 - 光子器件,预计输送方法将成为装置数量的主要瓶颈,因为电流装置使用侧面耦合,其限于样本边缘。 本文介绍了从自由空间直接从自由空间耦合到220nm薄硅亚硝酸盐(Si3n4)的独立膜上耦合的光线。 这些耦合器的设计是建模的,在优雅的设计公式中捕获,并进行了实验测试。 12%的耦合效率使实验耦合到可能的原子光子器件阵列。 优雅的设计配方为全介电材料和波长为直接的光栅设计。 对于该公式,在光栅层内部的特定波导模式的正确测定是必不可少的。 (c)2020美国光学学会

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