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Raman measurements using a field-widened spatial heterodyne Raman spectrometer

机译:使用现场加宽的空间外差拉曼光谱仪的拉曼测量

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Spatial heterodyne Raman spectroscopy has become a useful spectroscopic detection technique that is particularly suitable for Raman measurements. This method uses the Fourier transform of the interferogram imaged on the detector by stationary diffraction gratings. Spatial heterodyne Raman spectroscopy has the same characteristic of conventional Fourier-transform spectroscopy, which is that the field of view is limited. We propose a two-dimensional spatial heterodyne Raman spectrometer (SHRS) that uses a field widening prism to effectively increase the throughput or sensitivity without sacrificing the spectral resolution for Raman measurements while broadening the bandpass. The signal-to-noise ratio is measured under different integrations or laser powers and shows that the system exhibits good stability and fair repeatability. Raman spectra obtained from the field-widened SHRS and a commercialized Raman instrument are compared, and the field-widened SHRS and the SHRS using the same instrumental parameters without field widening are also compared. A higher signal-to-noise ratio can be achieved using the field-widened SHRS. In our measurements, the field-widened SHRS can be operated under the slightly more complex conditions required for wide-field measurements with short integration times and low laser power. Raman spectra of a pure inorganic target or a target contained in glass and a plastic bottle are observed. A sulfate is investigated in two states: solid salt and aqueous solution. Several mixture liquids, mixture solids, minerals, and anti-Stokes Raman shifts are also investigated. The results show that the field-widened SHRS exhibits a good performance to successfully perform wide-field Raman measurements.
机译:空间外差拉曼光谱已经成为一种有用的光谱检测技术,特别适用于拉曼测量。该方法通过静止衍射光栅使用在检测器上成像的干扰图的傅里叶变换。空间外差拉曼光谱具有与传统的傅里叶变换光谱相同的特征,即视场是有限的。我们提出了一种二维空间外差拉曼光谱仪(SHR),其使用场宽化棱镜来有效地提高吞吐量或灵敏度,而不会牺牲拉曼测量的光谱分辨率,同时扩大带通。信噪比在不同的集成或激光功率下测量,并表明系统表现出良好的稳定性和公平的可重复性。比较了从现场加宽的SHR和商业化拉曼仪器获得的拉曼光谱,并且还比较了使用与没有场扩展的相同仪器参数的现场加宽的SHRS和SHRS。使用现场加宽的SHRS可以实现更高的信噪比。在我们的测量中,可以在具有短路集成时间和低激光功率的宽场测量所需的稍微复杂条件下操作现场加宽的SHR。观察到纯无机靶的拉曼光谱或玻璃和塑料瓶中的靶。在两个状态下研究硫酸盐:固体盐和水溶液。还研究了几种混合液,混合物固体,矿物质和抗斯托克斯拉曼换档。结果表明,现场加宽的SHRS表现出良好的性能,可以成功地执行广泛的RAMAN测量。

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