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Assessment of a fast electro-optical shutter for 1D spontaneous Raman scattering in flames

机译:评估用于火焰中一维自发拉曼散射的快速光电快门

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摘要

A critical aspect of 1D single-shot spontaneous Raman scattering (SRS) experiments in turbulent flames is the need to ensure highly efficient detection associated with fast temporal gating to remove flame emission. Back-illuminated CCD cameras are remarkable for their high quantum efficiency, large dynamic range, good spatial resolution and low readout noise. However, their full-frame architecture makes these detectors difficult to use for SRS measurements in flame and requires the development of a high-speed shutter. The present work proposes a fast electro-optical shutter composed of a large aperture Pockels cell placed between two crossed polarizers, providing high-speed gating up to 500 ns. The throughput of the shutter and its spatial homogeneity are measured. The angular tolerance of the Pockels cell is determined and its suitability for 1D probing is assessed. Spectra acquired in a premixed methane-air flame show the capacity of the shutter to remove flame emission and increase the signal-to-noise ratio for major Raman species.
机译:在湍流火焰中进行一维单发自发拉曼散射(SRS)实验的一个关键方面是需要确保与快速时间选通相关的高效检测以消除火焰发射。背照式CCD相机以其高量子效率,大动态范围,良好的空间分辨率和低读出噪声而著称。但是,它们的全帧架构使得这些探测器很难用于火焰中的SRS测量,并且需要开发高速快门。本工作提出了一种快速电光快门,该快门由位于两个交叉偏振器之间的大孔径普克尔斯盒组成,可提供高达500 ns的高速选通。测量百叶窗的吞吐量及其空间均匀性。确定普克尔斯盒的角公差,并评估其对一维探测的适用性。在预混合的甲烷-空气火焰中获得的光谱表明,百叶窗具有消除火焰排放并增加主要拉曼物种信噪比的能力。

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