Sensitivity enhancement of time-gated Raman spectroscopy by reducing the systematic noise of residual fluorescence background.

IF 3.1 2区 物理与天体物理 Q2 OPTICS
Optics letters Pub Date : 2024-12-15 DOI:10.1364/OL.540236
Zhenyou Wang, Guangyou Fang
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Abstract

Fluorescence interference is a pervasive challenge in Raman spectroscopy, often limiting its broader application. Time-gated Raman spectroscopy offers a more universal solution by temporally separating Raman signals from fluorescence; however, it faces significant challenges when dealing with samples that exhibit short fluorescence lifetimes. Achieving high time resolution to effectively distinguish these signals typically requires advanced detectors that are not only costly but also difficult to source commercially, often resulting in substantial residual fluorescence that diminishes overall signal quality. In this work, we identified that the dominant noise in time-gated Raman spectroscopy is wavelength-to-wavelength fluctuation noise, which cannot be reduced by simply extending the collection time. Through our analysis, we discovered that this noise is linearly proportional to the fluorescence background and remains consistent across different time windows when collected using the time-correlated single-photon counting (TCSPC) technology. Recognizing this consistent pattern, we developed a novel, to the best of our knowledge, method to effectively remove this noise by leveraging the time-resolved fluorescence spectrum. For example, in the case of sesame oil excited with a 532 nm laser, it is typically difficult to obtain a recognizable Raman spectrum when the gate width exceeds 300 ps. However, using our method, we were able to achieve a decent signal even with a gate width of 4 ns. By correcting the Raman spectrum using the captured pure fluorescence spectrum, we achieve up to a 23-fold improvement in the signal-to-noise ratio (SNR). This innovation significantly reduces the dependence on high-cost, high-time-resolution detectors, potentially expanding the adoption and applicability of time-gated Raman spectroscopy across various fields.

通过降低残余荧光背景的系统噪声,提高时间门控拉曼光谱的灵敏度。
荧光干扰是拉曼光谱学中普遍存在的难题,往往限制了拉曼光谱学的广泛应用。时间门控拉曼光谱通过在时间上分离拉曼信号和荧光,提供了一种更通用的解决方案;然而,在处理荧光寿命较短的样品时,时间门控拉曼光谱面临着巨大的挑战。要实现有效区分这些信号的高时间分辨率,通常需要先进的检测器,而这些检测器不仅成本高昂,而且很难从市场上采购,这往往会导致大量荧光残留,从而降低整体信号质量。在这项工作中,我们发现在时间门控拉曼光谱中占主导地位的噪声是波长间波动噪声,这种噪声无法通过简单地延长采集时间来降低。通过分析,我们发现这种噪声与荧光背景成线性比例,并且在使用时间相关单光子计数(TCSPC)技术采集时,在不同的时间窗口中保持一致。认识到这种一致的模式后,我们开发了一种新颖的方法,据我们所知,这种方法可以利用时间分辨荧光光谱有效地去除这种噪声。例如,在用 532 nm 激光激发芝麻油的情况下,当栅宽超过 300 ps 时,通常很难获得可识别的拉曼光谱。然而,使用我们的方法,即使栅极宽度为 4 毫微秒,我们也能获得像样的信号。通过使用捕获的纯荧光光谱对拉曼光谱进行校正,我们将信噪比(SNR)提高了 23 倍。这一创新大大降低了对高成本、高时间分辨率探测器的依赖,有可能扩大时间门控拉曼光谱在各个领域的应用范围。
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来源期刊
Optics letters
Optics letters 物理-光学
CiteScore
6.60
自引率
8.30%
发文量
2275
审稿时长
1.7 months
期刊介绍: The Optical Society (OSA) publishes high-quality, peer-reviewed articles in its portfolio of journals, which serve the full breadth of the optics and photonics community. Optics Letters offers rapid dissemination of new results in all areas of optics with short, original, peer-reviewed communications. Optics Letters covers the latest research in optical science, including optical measurements, optical components and devices, atmospheric optics, biomedical optics, Fourier optics, integrated optics, optical processing, optoelectronics, lasers, nonlinear optics, optical storage and holography, optical coherence, polarization, quantum electronics, ultrafast optical phenomena, photonic crystals, and fiber optics. Criteria used in determining acceptability of contributions include newsworthiness to a substantial part of the optics community and the effect of rapid publication on the research of others. This journal, published twice each month, is where readers look for the latest discoveries in optics.
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