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Measurement of aerosol optical properties by cw cavity enhanced spectroscopy

机译:CW腔增强光谱法测量气溶胶光学性能

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The CAPS (Cavity attenuated phase shift spectroscopy) system, which detects the extinction coefficients within a 10 nm bandpass centered at 532 nm, comprises a green LED with center wavelength in 532nm, a resonant optical cavity(36 cm length), a Photo Multiplier Tube detector and a lock in amplifier. The square wave modulated light from the LED passes through the optical cavity and is detected as a distorted waveform which is characterized by a phase shift with respect to the initial modulation. Extinction coefficients are determined from changes in the phase shift of the distorted waveform of the square wave modulated LED light that is transmitted through the optical cavity. The performance of the CAPS system was evaluated by using measurements of the stability and response of the system. The minima (~0.1 Mm~(-1)) in the Allan plots show the optimum average time(~100s) for optimum detection performance of the CAPS system. In the paper, it illustrates that extinction coefficient was correlated with PM_(2.5) mass (0.91).These figures indicate that this method has the potential to become one of the most sensitive on-line analytical techniques for extinction coefficient detection. This work aims to provide an initial validation of the CAPS extinction monitor in laboratory and field environments. Our initial results presented in this paper show that the CAPS extinction monitor is capable of providing state-of-the-art performance while dramatically reducing the complexity of optical instrumentation for directly measuring the extinction coefficients .
机译:检测在532nm的10nm带通物内的帽(腔衰减相移谱)系统中检测到10nm带通的消光系数,包括在532nm中的中心波长的绿色LED,谐振光腔(36cm长),照片乘法管探测器和放大器中的锁。来自LED的方波调制的光通过光学腔并被检测为失真的波形,其特征在于相对于初始调制的相移。从方形波调制的LED光的变形波形的相变的变化确定消光系数,该方向被传输通过光学腔。通过使用系统的稳定性和响应来评估帽系统的性能。 Allan图中的最小值(约0.1mm〜(-1))显示了最佳的平均时间(〜100s),以实现帽系统的最佳检测性能。在本文中,它说明了消光系数与PM_(2.5)质量(0.91)相关。这些方法表明该方法具有成为消光系数检测的最敏感的在线分析技术之一。这项工作旨在在实验室和现场环境中提供盖帽灭绝监测器的初始验证。本文提出的初始结果表明,盖子消光监测器能够提供最先进的性能,同时显着降低光学仪器的复杂性直接测量消光系数。

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