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用于生物标志物检测的光纤色散拉曼光谱仪的可行性

Feasibility of a Fiber-Dispersive Raman Spectrometer for Biomarker Detection.

作者信息

Sidorova Mariia, Pavlov Sergey G, Böttger Ute, Baqué Mickael, Semenov Alexei D, Hübers Heinz-Wilhelm

机构信息

Humboldt-Universität zu Berlin, Department of Physics, Berlin, Germany.

German Aerospace Center (DLR), Institute of Optical Sensor Systems, Berlin, Germany.

出版信息

Appl Spectrosc. 2024 Oct;78(10):1098-1104. doi: 10.1177/00037028241267892. Epub 2024 Aug 18.

Abstract

Raman spectroscopy is among the top analytical techniques for ultra-low-dense organic matter, crucial to the search for life and analysis of celestial body surfaces in space exploration missions. Achieving the ultimate sensitivity of in-situ Raman spectroscopy necessitates a breakthrough in detecting inelastically scattered light. Single-photon detectors (SPDs) operating in photon counting mode, which can differentiate between Raman and luminescence responses, are promising candidates for the challenging scientific requirements. Since large SPD arrays are not yet commercially available, a dispersive element can be adapted to a single-pixel detector. By exploiting chromatic dispersion in optical fibers and picosecond-pulsed excitation, we delay the arrivals of different spectral components onto a single-pixel SPD. This method also separates weak Raman signals from stronger luminescence through correlated time-domain measurements. We study the impact of fiber properties and the excitation wavelength of a pulsed laser on the spectral resolution of the fiber-dispersive Raman spectrometer (FDRS). Additionally, we demonstrate the FDRS's potential for studying biomarkers and discuss its feasibility for analyzing inclusions in ice matrices.

摘要

拉曼光谱是用于超低密度有机物的顶级分析技术之一,对于太空探索任务中寻找生命和分析天体表面至关重要。要实现原位拉曼光谱的极限灵敏度,需要在检测非弹性散射光方面取得突破。工作在光子计数模式下的单光子探测器(SPD)能够区分拉曼响应和发光响应,是满足这一具有挑战性的科学要求的有潜力的候选者。由于大型SPD阵列尚未商业化,可将色散元件适配到单像素探测器上。通过利用光纤中的色散和皮秒脉冲激发,我们将不同光谱成分的到达时间延迟到单像素SPD上。该方法还通过相关的时域测量将微弱的拉曼信号与较强的发光信号分离。我们研究了光纤特性和脉冲激光激发波长对光纤色散拉曼光谱仪(FDRS)光谱分辨率的影响。此外,我们展示了FDRS在研究生物标志物方面的潜力,并讨论了其分析冰基质中包裹体的可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4cbb/11492548/325d1b0fda98/10.1177_00037028241267892-img1.jpg

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