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High-energy single-longitudinal-mode mid-infrared optical parametric amplifier seeded with sheet optical parametric oscillator

机译:高能单纵模中红外光学参数放大器播种,带薄片光学参数振荡器

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Mid-infrared (MIR) radiation is essential for remote gas sensing, ranging, and lidar applications, where high pulse energy and narrow linewidth are the keys to the high sensitivity over long distance. However, complex optical and electronic locking schemes are normally required to achieve both features at the same time. Here, we demonstrate pulse-pumped single-longitudinal-mode (SLM) MIR generation using a microresonator seed in the form of a sheet optical parametric oscillator (SOPO). The SOPO features a sub-coherence-length thickness of 400 μ m, which enables SLM and high-energy oscillation using cavity phase matching. Its output around 1.55 μ m is seeded into an optical parametric amplifier and locks the MIR output in SLM at 3.38 μ m. In a simple and compact setup, up to 21% conversion efficiency and 22% slope efficiency are measured with a MIR output energy of 54 μ J. This SLM MIR source with the SOPO seed greatly reduces the system size and is compatible for further integration for field-deployable devices and thus has broad applications in the field of remote gas sensing.
机译:中红外线(MIR)辐射对于远程气体传感,测距和LIDAR应用至关重要,其中高脉冲能量和窄线宽是长距离高灵敏度的键。然而,通常需要复杂的光学和电子锁定方案来同时实现这两个特征。这里,我们展示了使用纸张光学参数振荡器(SOPO)形式的微生物种子的脉冲泵浦单纵模式(SLM)MIR。 SOPO具有400μm的子相干长度厚度,可使用腔相位匹配来实现SLM和高能振荡。将1.55μm的输出接种到光学参数放大器中,并锁定在3.38μm的SLM中的MIR输出。在简单且紧凑的设置中,通过54μJ的MIR输出能量测量高达21%的转换效率和22%的斜率效率。该SLM MIR源具有SOPO种子的大大减少了系统尺寸,并兼容进一步集成现场可部署的设备,因此在远程气体感应领域具有广泛的应用。

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