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Continuous-wave 3.1 – 3.6 μm difference-frequency generation of dual wavelength-tunable fiber sources in PPMgLN-based rapid-tuning design

机译:基于ppmgLN的快速调谐设计中双波长可调谐光纤的连续波3.1 - 3.6μm差频生成

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摘要

We report on a single-frequency continuous wave (CW) difference-frequency generation (DFG) source based on single-frequency wavelength-tunable polarization-maintaining ytterbium- and erbium-doped fiber master oscillator-power amplifiers (MOPAs), acting as the pump and signal source, respectively, and a 40-mm long periodically poled MgO-doped LiNbO3 (PPMgLN) crystal. Owing to the dual wavelength-tuning of the MOPAs, the generated idler light reaches a wavelength-tuning range of close to 500 nm, from ~3117.2 to ~3598.8 nm, only by tuning the launched pump and signal wavelengths from 1040 nm to 1084.6 nm and from 1545.2 nm to 1561.4 nm, respectively, without any change of temperature or grating period of the PPMgLN. Compared to temperature-based idler-wavelength-tuning, this method is potentially faster in speed. The maximum idler power exceeds 60 mW, which is the highest reported power for a wavelength-tunable single-frequency CW DFG source. A rapidly wideband-tunable DFG source with tens of milliwatts of output power in a narrow line can be a practical tool for mid-infrared molecular spectroscopy, detection, and sensing at high measurement rates.
机译:我们报告了一种基于单频波长可调谐偏振保持polarization和掺-光纤主振荡器功率放大器(MOPA)的单频连续波(CW)差频生成(DFG)源。泵浦和信号源,以及一个40毫米长的周期性极化掺MgO的LiNbO3(PPMgLN)晶体。由于MOPA的双重波长调谐,仅通过将发射的泵浦光和信号波长从1040 nm调谐到1084.6 nm,所产生的闲散光就可以达到接近500 nm的波长调谐范围,从〜3117.2至〜3598.8 nm。分别从1545.2 nm到1561.4 nm,并且PPMgLN的温度或光栅周期没有任何变化。与基于温度的惰轮波长调谐相比,该方法的速度可能更快。最大惰轮功率超过60 mW,这是波长可调单频CW DFG源的最高报告功率。快速的宽带可调DFG源,在狭窄的线路中具有数十毫瓦的输出功率,可以成为用于中红外分子光谱学,检测和高测量速率传感的实用工具。

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