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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Effective Suppression of Stray Light in Rotational Coherent Anti-Stokes Raman Spectroscopy Using an Angle-Tuned Short-Wave-Pass Filter
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Effective Suppression of Stray Light in Rotational Coherent Anti-Stokes Raman Spectroscopy Using an Angle-Tuned Short-Wave-Pass Filter

机译:使用角调谐短波滤光片有效抑制旋转相干反斯托克斯拉曼光谱中的杂散光

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摘要

Stray light interference is a common problem in spontaneous rotational Raman spectroscopy and rotational coherent anti-Stokes Raman spectropscopy (CARS). The reason is that the detected spectrum appears in the spectral vicinity of the probe beam wavelength, and stray light at this wavelength from optics and surfaces is hard to suppress. In this Note, efficient suppression of stray light is demonstrated for rotational CARS measurements using a commercially available short-wave-pass filter. By angle-tuning this filter with a specified cut-off wavelength at 561 nm, the cut-off wavelength could be tuned to a desired spectral position so that more than 80percent transmission is achieved as close as 15 cm~(-1) (approx0.4 nm) from the probe beam wavelength of 532.0 nm, while the intensity at this wavelength is suppressed by two orders of magnitude.
机译:杂散光干扰是自发旋转拉曼光谱和旋转相干反斯托克斯拉曼光谱(CARS)中的常见问题。原因是检测到的光谱出现在探测光束波长的光谱附近,并且难以抑制来自光学器件和表面的该波长的杂散光。在本说明中,使用商用短波滤波器对旋转CARS测量有效地抑制了杂散光。通过以指定的截止波长在561 nm处对该滤光器进行角度调谐,可以将截止波长调谐到所需的光谱位置,从而在15 cm〜(-1)的范围内实现超过80%的透射率(约0探头光束的波长为532.0 nm时约为0.4 nm),而该波长下的强度被抑制了两个数量级。

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