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基于单光栅整体空间外差拉曼光谱仪的远程拉曼传感:行星探测的潜在工具。

Remote Raman Sensing Using a Single-Grating Monolithic Spatial Heterodyne Raman Spectrometer: A Potential Tool for Planetary Exploration.

机构信息

Hawaii Institute of Geophysics and Planetology, University of Hawaii at Manoa, Honolulu, HI, USA.

Department of Chemistry and Biochemistry, University of South Carolina, Columbia, SC, USA.

出版信息

Appl Spectrosc. 2023 May;77(5):534-549. doi: 10.1177/00037028221121304. Epub 2022 Oct 12.

Abstract

Advances in Raman instrumentation have led to the implementation of a remote dispersive Raman spectrometer on the rover on Mars, which is used for remote sensing. For remote applications, dispersive spectrometers suffer from a few setbacks such as relatively larger sizes, low light throughput, limited spectral ranges, relatively low resolutions for small devices, and high sensitivity to misalignment. A spatial heterodyne Raman spectrometer (SHRS), which is a fixed grating interferometer, helps overcome some of these problems. Most SHRS devices that have been described use two fixed diffraction gratings, but a variance of the SHRS called the one-grating SHRS (1g-SHRS) replaces one of the gratings with a mirror, which makes it more compact. In a recent paper we described monolithic two-gratings SHRS, and in this paper, we investigate a single-grating monolithic SHRS (1g-mSHRS), which combines the 1g-SHRS with a monolithic setup previously tested at the University of South Carolina. This setup integrates the beamsplitter, grating, and mirror into a single monolithic device. This reduces the number of adjustable components, allows for easier alignment, and reduces the footprint of the device (35 × 35 × 25 mm with a weight of 80 g). This instrument provides a high spectral resolution (∼9 cm) and large spectral range (7327 cm) while decreasing the sensitivity to alignment with a field of view of 5.61 mm at 3m. We discuss the characteristics of the 1g-mSHRS by measuring the time-resolved remote Raman spectra of a few inorganic salts, organics, and minerals at 3 m. The 1g-mSHRS makes a good candidate for planetary exploration because of its large spectral range, greater sensitivity, competitively higher spectral resolution, low alignment sensitivity, and high light throughput in a compact easily aligned system with no moving parts.

摘要

拉曼仪器的进步使得在火星车上实现了远程色散拉曼光谱仪,用于遥感。对于远程应用,色散光谱仪存在一些缺点,例如尺寸相对较大、光通量低、光谱范围有限、小器件分辨率相对较低以及对失准的高灵敏度。空间外差 Raman 光谱仪 (SHRS) 是一种固定光栅干涉仪,有助于克服其中的一些问题。大多数已经描述的 SHRS 设备使用两个固定衍射光栅,但一种称为单光栅 SHRS (1g-SHRS) 的 SHRS 变体用镜子代替其中一个光栅,使其更紧凑。在最近的一篇论文中,我们描述了单片双光栅 SHRS,在本文中,我们研究了一种单光栅单片 SHRS (1g-mSHRS),它将 1g-SHRS 与在南卡罗来纳大学之前测试过的单片设置相结合。该设置将分束器、光栅和镜子集成到单个单片设备中。这减少了可调节组件的数量,允许更容易的对准,并减少了设备的占地面积(35×35×25 毫米,重量为 80 克)。该仪器提供了高光谱分辨率(约 9cm)和大光谱范围(7327cm),同时降低了对 3m 处 5.61mm 视场对准的灵敏度。我们通过测量几种无机盐、有机物和矿物在 3m 处的时间分辨远程拉曼光谱来讨论 1g-mSHRS 的特性。1g-mSHRS 是行星探索的理想选择,因为它具有大的光谱范围、更高的灵敏度、具有竞争力的更高光谱分辨率、对失准的低灵敏度以及在紧凑、易于对准且无运动部件的系统中具有高的光通量。

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