Publication: Single-photon detection using high-temperature superconductors
Single-photon detection using high-temperature superconductors
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Charaev, I., Bandurin, D. A., Bollinger, A. T., Phinney, I. Y., Drozdov, I., Colangelo, M., Butters, B. A., Taniguchi, T., Watanabe, K., He, X., Medeiros, O., Božović, I., Jarillo-Herrero, P., & Berggren, K. K. (2023). Single-photon detection using high-temperature superconductors. Nature Nanotechnology, 18(4), 343–349. https://doi.org/10.1038/s41565-023-01325-2
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The detection of individual quanta of light is important for quantum communication, fluorescence lifetime imaging, remote sensing and more. Due to their high detection efficiency, exceptional signal-to-noise ratio and fast recovery times, superconducting-nanowire single-photon detectors (SNSPDs) have become a critical component in these applications. However, the operation of conventional SNSPDs requires costly cryocoolers. Here we report the fabrication of two types of high-temperature superconducting nanowires. We observe linear sca
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Charaev, I., Bandurin, D. A., Bollinger, A. T., Phinney, I. Y., Drozdov, I., Colangelo, M., Butters, B. A., Taniguchi, T., Watanabe, K., He, X., Medeiros, O., Božović, I., Jarillo-Herrero, P., & Berggren, K. K. (2023). Single-photon detection using high-temperature superconductors. Nature Nanotechnology, 18(4), 343–349. https://doi.org/10.1038/s41565-023-01325-2