波长
信号(编程语言)
光学
激光器
化学
光谱学
光电子学
非线性系统
可调谐激光器
探测器
光电探测器
同位素
观测误差
谱线
功率(物理)
光谱分辨率
米
激光功率缩放
二极管
信号处理
准确度和精密度
校准
激光二极管
分光计
光功率
时滞与积分
吞吐量
发光二极管
分辨率(逻辑)
半导体激光器理论
注入锁定
作者
Ligang Shao,Tao Cheng,Shiling Feng,Xinqian Guo,Ruifeng Wang,Jia‐Jin Jason Chen,Jiaoxu Mei,Guishi Wang,Kun Liu,Xiaoming Gao
标识
DOI:10.1021/acs.analchem.5c04382
摘要
Conventional off-axis integrated cavity output spectroscopy (OA-ICOS) measurements suffer from a tilted baseline in the Y-axis direction and nonlinear wavelength variations across the X-axis, both of which degrade measurement accuracy. Here, we present an improved OA-ICOS variant, featuring ramp-baseline immunity and wavelength-precise scanning capabilities, realized through active locking technology. A custom-designed wavelength meter with simple construction and rapid response was designed to enable precise wavelength measurement and feedback locking. Simultaneously, laser power amplification combined with feedback control ensures wavelength-independent uniform optical power. This approach delivers three significant advantages. First, the amplified probe light mitigates the throughput constraint in off-axis configurations and partially eases the demands on the photodetector for weak signal detection and amplification. Second, the flat spectral baseline reduces estimation errors associated with nonlinear ramp backgrounds while simultaneously simplifying signal processing and improving measurement accuracy. Finally, active wavelength locking delivers accurate wavelength acquisition, enabling precise spectral characterization. Using an off-axis configured optical cavity, as well as a near-infrared diode laser, the feasibility and practical efficacy of this active stabilization approach is experimentally validated by recording the spectra of 12CO2 and 13CO2 isotopologues in the laboratory and in the field.
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