信息来源: 发布日期:2026-03-05
yuedai@fzu.edu.cn
2016.9-2020.6 西南交通大学,信息科学与技术学院,工学学士2020.9-2025.6 南京大学,电子科学与工程学院,工学博士2025.8-至今 福州大学先进制造学院-电子信息工程系 副教授
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研究方向为半导体/超导异质集成微纳器件与集成电路,围绕电子信息领域的微纳器件设计与研发(异质集成光电探测器件)等方面开展科研工作。
1). All-fiber device for single-photon detection. PhotoniX. 4, 1(2023). (中科院物理与天体物理1区 Top 期刊)2). Mid-infrared superconducting nanowire single photon detector enhanced by overcoupled metasurfaces. Science Bulletin. 69, 2665–2669(2024). (中科院综合性期刊1区 Top 期刊)3). Sub-millikelvin-resolved superconducting nanowire single-photon detector operates with sub-pW infrared radiation power. National Science Review. 12, nwae319(2025). (中科院综合性期刊1区 Top 期刊)4). Design and fabrication of superconducting single-photon detector operating in 5–10 μm wavelength band. Acta Physica Sinica. 71, 248502(2022).5). Noise characteristics analysis and suppression of optical system based on infrared superconducting single-photon detector. Acta Physica Sinica. 73, 360–367(2024).6). Fast and efficient detection of a single photon with hole-patterned superconductor microstrips. Applied Physics Letters. 121, 122601(2022).7). Photon-assisted Phase Slips in Superconducting Nanowires. Physical Review Applied. 17, 014032(2022).8). Mid-infrared single photon detector with superconductor Mo0.8Si0.2 nanowire. Science Bulletin. 66, 965–968(2021).9). All-Water Etching-Free Electron Beam Lithography for On-Chip Nanomaterials. ACS Nano. 17, 4933–4941(2023).10). Saturation efficiency for detecting 1550 nm photons with a 2×2 array of Mo0.8Si0.2 nanowires at 2.2 K. Photonics Research. 9, 389–394(2021).
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