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3.5-μm High-resolution Gas Sensing Employing A Linbo_3 Qpm-dfg Waveguide Module

机译:采用Linbo_3 Qpm-dfg波导模块的3.5μm高分辨率气体传感

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Diode laser technology coupled with a wavelength-conversion unit to produce mid-infrared narrow bandwidth laser light applicable to trace-gas detection and with the potential for high-resolution spectroscopy is described. Quasi-phase-matched difference-frequency generation (QPM-DFG) in a compact and fibre-coupled periodically poled lithium niobate (PPLN) waveguide module mixing 1063 and 1525-nm radiations has been adopted for generating 34 μW of 3.5-μm wavelength laser light. Optical detection methods, including sensitive wavelength modulation spectroscopy and a rapid wavelength chirp technique, have been employed with a single-pass cell to investigate methane and formaldehyde absorption profiles around 2855 cm~(-1), as proof of principle experiments for high sensitivity and resolution spectroscopy on atmospherically important molecules.
机译:描述了与波长转换单元耦合以产生适用于痕量气体检测并且具有高分辨率光谱学潜力的中红外窄带宽激光的二极管激光技术。已采用混合了1063和1525 nm辐射的紧凑且纤维耦合的周期性极化铌酸锂(PPLN)波导模块中的准相位匹配差频生成(QPM-DFG)来生成34μW的3.5μm波长激光器光。光学检测方法,包括敏感波长调制光谱法和快速波长线性调频技术,已与单通道电池一起用于研究2855 cm〜(-1)附近的甲烷和甲醛吸收曲线,作为高灵敏度和高灵敏度原理实验的证明。大气重要分子的高分辨光谱学。

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