二维拉曼成像绘制 H2 的振动和旋转温度图

IF 2.3 3区 物理与天体物理 Q2 OPTICS Journal of Quantitative Spectroscopy & Radiative Transfer Pub Date : 2024-08-05 DOI:10.1016/j.jqsrt.2024.109145
D. Del Cont-Bernard, M.D. Ruijzendaal, T.W.H. Righart, G.J. van Rooij, T.D. Butterworth
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引用次数: 0

摘要

我们展示了一种用于 H2 旋转和振动温度二维成像的拉曼散射诊断方法。其应用包括振动-旋转非平衡环境,如含 H2 的超音速喷流和等离子反应堆。我们使用装有多个带通滤波器的 ICCD 相机对包含一个或多个拉曼特征的激光散射光谱片段进行成像。通过了解其透射光谱,可以构建校准曲线,将多光谱图像的相对强度与旋转和振动温度联系起来。此外,绝对强度还能显示 H2 的密度。我们展示了独立测量旋转温度(300-3000 K,±150 K)和振动温度(1000-3000 K,±50 K)的能力。该技术在两个不同的 H2 微波等离子体上进行了演示,并与传统的 0D 和 1D 拉曼光谱拟合进行了验证。
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2D Raman imaging for vibrational and rotational temperature mapping in H2

We showcase a Raman scattering diagnostic for 2D imaging of the rotational and vibrational temperatures of H2. Applications include environments with vibrational-rotational non-equilibrium such as H2-containing supersonic jets and plasma reactors. We image segments of the laser scattering spectrum, containing one or more Raman features, using an ICCD camera that is equipped with one of several bandpass filters. Knowing their transmission spectrum allows the construction of calibration curves that relate the relative intensities of the multi-spectral image to the rotational and vibrational temperatures. Additionally, the absolute intensity indicates the density of H2. We illustrate the capability to independently measure rotational (300–3000 K, ±150 K) and vibrational temperatures (1000–3000 K, ±50 K). The technique is demonstrated on two different H2 microwave plasmas and validated against conventional fitting of 0D and 1D Raman spectra.

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来源期刊
CiteScore
5.30
自引率
21.70%
发文量
273
审稿时长
58 days
期刊介绍: Papers with the following subject areas are suitable for publication in the Journal of Quantitative Spectroscopy and Radiative Transfer: - Theoretical and experimental aspects of the spectra of atoms, molecules, ions, and plasmas. - Spectral lineshape studies including models and computational algorithms. - Atmospheric spectroscopy. - Theoretical and experimental aspects of light scattering. - Application of light scattering in particle characterization and remote sensing. - Application of light scattering in biological sciences and medicine. - Radiative transfer in absorbing, emitting, and scattering media. - Radiative transfer in stochastic media.
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