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2.4微米单片半导体波导中的宽可调谐频率转换

Widely tunable frequency conversion in monolithic semiconductor waveguides at 2.4  μm.

作者信息

Abolghasem Payam, Kang Dongpeng, Logan Dylan F, Lungwitz Mandy, Helmy Amr S

出版信息

Opt Lett. 2014 Jun 15;39(12):3591-4. doi: 10.1364/OL.39.003591.

Abstract

We report on the generation of continuous-wave widely tunable light between 2360 and 2530 nm using difference-frequency generation with a pump tuned between 938 and 952 nm and a signal tuned between 1490 and 1590 nm in a type-II phase-matched monolithic semiconductor waveguide. The device internal conversion efficiency is estimated to be 0.29%  W(-1)  cm(-2). This design which uses a single-sided Bragg reflection waveguide has the potential for on-chip spectroscopy, as well as environmental monitoring applications, where a tunable source of coherent radiation tuned between 2 and 3 μm wavelength is desired.

摘要

我们报道了在一个II 型相位匹配的单片半导体波导中,通过和频产生实现2360至2530纳米之间连续波宽可调谐光的产生,泵浦光调谐在938至952纳米之间,信号光调谐在1490至1590纳米之间。该器件的内部转换效率估计为0.29% W⁻¹ cm⁻²。这种采用单面布拉格反射波导的设计具有用于片上光谱学以及环境监测应用的潜力,这些应用需要一个波长在2至3微米之间可调谐的相干辐射源。

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