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High-sensitivity laser absorption measurements of broadband absorbers in the near-infrared spectral region

机译:在近红外光谱区域中宽带吸收器的高灵敏度激光吸收测量

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We describe the development and characterization of a near-infrared diode-laser-based sensor to measure the vapor from trace gases having unstructured absorption spectra. The technique uses two equal amplitude-modulated laser beams, with the modulation of the two lasers differing in phase by 180 deg. One of the laser beams is at a wavelength absorbed by the gas [for these experiments, vapor is from pyridine (C_(5)H_(5)N)], and the second laser beam is at a wavelength at which no absorption occurs. The two laser beams are launched onto near-coincident paths by graded-index lens-tipped optical fibers. The mixed laser beam signal is detected by use of a single photodiode and is demodulated with standard phase-sensitive detection. Data are presented for the detection and measurement of vapor from pyridine (C_(5)H_(5)N) by use of the mixed laser technique. The discussion focuses on experimental determination of whether a compound exhibits unstructured absorption spectra (referred to here as a broadband absorber) and methods used to maximize sensitivity.
机译:我们描述了基于近红外二极管激光的传感器的发展和特征,以测量具有非结构化吸收光谱的痕量气体中的蒸气。该技术使用两个等幅调制的激光束,两个激光器的调制相位相差180度。激光束之一处于被气体吸收的波长[对于这些实验,蒸气来自吡啶(C_(5)H_(5)N)],第二激光束处于不发生吸收的波长。这两个激光束通过渐变折射率透镜尖端的光纤发射到接近重合的路径上。混合的激光束信号通过使用单个光电二极管进行检测,并通过标准的相敏检测进行解调。提出了使用混合激光技术检测和测量吡啶(C_(5)H_(5)N)中的蒸气的数据。讨论的重点是确定化合物是否表现出非结构化吸收光谱(此处称为宽带吸收剂)的实验确定以及用于最大化灵敏度的方法。

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