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使用单向环形腔来减少多纵模泵浦效应的GHz带宽上转换探测器。

GHz-bandwidth upconversion detector using a unidirectional ring cavity to reduce multilongitudinal mode pump effects.

作者信息

Meng Lichun, Høgstedt Lasse, Tidemand-Lichtenberg Peter, Pedersen Christian, Rodrigo Peter John

出版信息

Opt Express. 2017 Jun 26;25(13):14783-14794. doi: 10.1364/OE.25.014783.

Abstract

We demonstrate efficient upconversion of modulated infrared (IR) signals over a wide bandwidth (up to frequencies in excess of 1 GHz) via cavity-enhanced sum-frequency generation (SFG) in a periodically poled LiNbO. Intensity modulated IR signal is produced by combining beams from two 1547 nm narrow-linewidth lasers in a fiber coupler while tuning their wavelength difference down to 10 pm or less. The SFG crystal is placed inside an Nd:YVO ring cavity that provides 1064 nm circulating pump powers of up to 150 W in unidirectional operation. Measured Fabry-Pérot spectrum at 1064 nm confirms the enhanced spectral stability from multiple to single longitudinal mode pumping condition. We describe analytically and demonstrate experimentally the deleterious effects of using a multimode pump to the high-bandwidth RF spectrum of the 630 nm SFG output. Offering enhanced sensitivity without the need for cooling, the GHz-bandwidth upconverter can readily be extended to the mid-IR (2 - 5 μm) as an alternative to cooled low-bandgap semiconductor detectors for applications such as high-speed free-space optical communications.

摘要

我们展示了通过周期性极化铌酸锂中的腔增强和频产生(SFG),在宽带宽(高达超过1 GHz的频率)上对调制红外(IR)信号进行高效的上转换。强度调制的红外信号是通过在光纤耦合器中组合来自两个1547 nm窄线宽激光器的光束,同时将它们的波长差调至10 pm或更小来产生的。SFG晶体放置在一个Nd:YVO环形腔内,该腔在单向运行时可提供高达150 W的1064 nm循环泵浦功率。在1064 nm处测量的法布里 - 珀罗光谱证实了从多纵模泵浦条件到单纵模泵浦条件下增强的光谱稳定性。我们通过分析描述并通过实验证明了使用多模泵浦对630 nm SFG输出的高带宽射频频谱的有害影响。该GHz带宽上变频器无需冷却即可提供增强的灵敏度,并且可以很容易地扩展到中红外(2 - 5μm),作为用于高速自由空间光通信等应用的冷却低带隙半导体探测器的替代方案。

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