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A new way of controlling NesCOPOs (Nested Cavity doubly resonant OPO) for faster and more efficient high resolution spectrum measurement

机译:一种控制NesCOPO(嵌套腔双共振OPO)的新方法,可实现更快,更高效的高分辨率光谱测量

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Optical Parametric Oscillator (OPO) is a well-known solution when wide tunability in the mid-infrared is needed. A specific design called NesCOPO (Nested Cavity doubly resonant OPO) is currently integrated in the X-FLR8 portable gas analyzer from Blue Industry and Science. Thanks to its low threshold this OPO can be pumped by a micro-chip nanosecond YAG (4 kHz repetition rate and a 30 GHz bandwidth). To achieve very high resolution spectra (10 pm of resolution or better), the emitted wavelength has to be finely controlled. Commercial Wavemeter do not meet price and compactness required in the context of an affordable and portable gas analyzer. To overcome this issue, Blue first integrated an active wavelength controller using multiple tunable Fabry-Perot (FP) interferometers. The required resolution was achieved at a 10 Hz measurement rate. We now present an enhanced Wavemeter architecture, based on fixed FP etalons. that is 100 times faster and 2 times smaller. We avoid having FP 'blind zones' thanks to one source characteristic: the knowledge of the FSR (Free Spectral Range) of the OPO source and thus, the fact that only discrete wavelengths can be emitted. First results are displayed showing faster measurement for spectroscopic application, and potential future improvement of the device are discussed.
机译:当需要中红外的宽可调性时,光参量振荡器(OPO)是一种众所周知的解决方案。 Blue Industry and Science的X-FLR8便携式气体分析仪目前集成了一种称为NesCOPO(嵌套腔双共振OPO)的特定设计。由于其低阈值,该OPO可以由微芯片纳秒级的YAG泵浦(4 kHz重复频率和30 GHz带宽)。为了获得非常高分辨率的光谱(分辨率为10 pm或更佳),必须对发射波长进行精确控制。商用波谱仪无法满足价格合理且便携式的气体分析仪所要求的价格和紧凑性。为了克服这个问题,Blue首先集成了使用多个可调谐Fabry-Perot(FP)干涉仪的有源波长控制器。以10 Hz的测量速率实现了所需的分辨率。现在,我们介​​绍基于固定FP标准具的增强型Wavemeter体系结构。快100倍,小2倍。由于一个光源特性,我们避免了FP“盲区”:OPO光源的FSR(自由光谱范围)知识以及因此只能发射离散波长的事实。首先显示的结果显示了光谱应用的更快测量,并讨论了该设备的潜在未来改进。

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