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High-efficiency broadband second harmonic generation in single hexagonal GaAs nanowire

机译:六角形GaAs纳米线中的高效宽带二次谐波生成

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摘要

In this paper, we investigate second harmonic generation in a single hexagonal GaAs nanowire. An excellent frequency converter based on this nanowire excited using a femtosecond laser is demonstrated to operate over a range from 730 nm to 1960 nm, which is wider than previously reported ranges for nanowires in the literature. The converter always operates with a high conversion efficiency of ~10−5 W−1 which is ~103 times higher than that obtained from the surface of bulk GaAs. This nanoscale nolinear optical converter that simultaneously owns high efficiency and broad bandwidth may open a new way for application in imaging, bio-sensing and on-chip all-optical signal processing operations.
机译:在本文中,我们研究了单六角形GaAs纳米线中的二次谐波产生。事实证明,基于这种使用飞秒激光激发的纳米线的出色变频器可以在730 nm至1960 nm的范围内工作,该范围比文献中先前报道的纳米线范围宽。转换器始终以〜10 −5 W -1 的高转换效率工作,这比从转换器获得的转换效率高约10 3 倍。 GaAs表面。这种同时具有高效率和宽带宽的纳米级非线性光学转换器可以为在成像,生物传感和片上全光信号处理操作中的应用开辟新途径。

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