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Few-photon color imaging using energy-dispersive superconducting transition-edge sensor spectrometry

机译:使用能量色散超导过渡边缘传感器光谱仪进行少光子彩色成像

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摘要

Highly sensitive spectral imaging is increasingly being demanded in bioanalysis research and industry to obtain the maximum information possible from molecules of different colors. We introduce an application of the superconducting transition-edge sensor (TES) technique to highly sensitive spectral imaging. A TES is an energy-dispersive photodetector that can distinguish the wavelength of each incident photon. Its effective spectral range is from the visible to the infrared (IR), up to 2800 nm, which is beyond the capabilities of other photodetectors. TES was employed in this study in a fiber-coupled optical scanning microscopy system, and a test sample of a three-color ink pattern was observed. A red–green–blue (RGB) image and a near-IR image were successfully obtained in the few-incident-photon regime, whereas only a black and white image could be obtained using a photomultiplier tube. Spectral data were also obtained from a selected focal area out of the entire image. The results of this study show that TES is feasible for use as an energy-dispersive photon-counting detector in spectral imaging applications.
机译:在生物分析研究和工业中,越来越需要高灵敏度的光谱成像,以从不同颜色的分子中获得最大的信息。我们介绍了超导过渡边缘传感器(TES)技术在高灵敏度光谱成像中的应用。 TES是一种能量分散型光电探测器,可以区分每个入射光子的波长。它的有效光谱范围是从可见光到红外(IR),高达2800 nm,这超出了其他光电探测器的能力。在这项研究中,将TES用于光纤耦合光学扫描显微镜系统,并观察到三色墨水图案的测试样品。在少数入射光子状态下成功获得了红绿蓝(RGB)图像和近红外图像,而使用光电倍增管只能获得黑白图像。还从整个图像中的选定焦点区域获得了光谱数据。这项研究的结果表明,TES在光谱成像应用中用作能量色散光子计数检测器是可行的。

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