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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Quantitative Tradeoffs Between Spatial, Temporal, and Thermometric Resolution of Nonresonant Raman Thermometry for Dynamic Experiments
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Quantitative Tradeoffs Between Spatial, Temporal, and Thermometric Resolution of Nonresonant Raman Thermometry for Dynamic Experiments

机译:动态实验的非共振拉曼测温的空间,时间和测温分辨率之间的定量权衡

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摘要

The ratio of Stokes to anti-Stokes nonresonant spontaneous Raman can provide an in situ thermometer that is noncontact, independent of any material specific parameters or calibrations, can be multiplexed spatially with line imaging, and can be time resolved for dynamic measurements. However, spontaneous Raman cross sections are very small, and thermometric measurements are often limited by the amount of laser energy that can be applied without damaging the sample or changing its temperature appreciably. In this paper, we quantitatively detail the tradeoff space between spatial, temporal, and thermometric accuracy measurable with spontaneous Raman. Theoretical estimates are pinned to experimental measurements to form realistic expectations of the resolution tradeoffs appropriate to various experiments. We consider the effects of signal to noise, collection efficiency, laser heating, pulsed laser ablation, and blackbody emission as limiting factors, provide formulae to help choose optimal conditions and provide estimates relevant to planning experiments along with concrete examples for single-shot measurements.
机译:斯托克斯与反斯托克斯非共振自发拉曼之比可以提供一种非接触式原位温度计,该温度计独立于任何材料特定的参数或校准,可以与线成像在空间上复用,并且可以动态解析时间以进行动态测量。然而,自发的拉曼横截面非常小,并且测温法通常受到可施加的激光能量的限制,而不会损坏样品或明显改变其温度。在本文中,我们定量地详细描述了可利用自发拉曼测量的空间,时间和测温精度之间的权衡空间。理论估计值固定在实验测量值上,以形成适用于各种实验的分辨率权衡的现实期望。我们将信噪比,采集效率,激光加热,脉冲激光烧蚀和黑体发射的影响视为限制因素,提供有助于选择最佳条件的公式,并提供与计划实验相关的估计以及用于单次测量的具体示例。

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