Sae Woo Nam
Affiliations: | National Institute of Standards and Technology, Gaithersburg, MD, United States |
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Sign in to add traineeTannaz Farrahi | post-doc | 2021- | NIST Boulder |
Adam N. McCaughan | research scientist | 2016- | NIST |
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Publications
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Buckley S, Chiles J, McCaughan AN, et al. (2022) All-silicon light-emitting diodes waveguide-integrated with superconducting single-photon detectors. Applied Physics Letters. 111 |
Chiles J, Charaev I, Lasenby R, et al. (2022) New Constraints on Dark Photon Dark Matter with Superconducting Nanowire Detectors in an Optical Haloscope. Physical Review Letters. 128: 231802 |
Liu J, Dona K, Hoshino G, et al. (2022) Broadband Solenoidal Haloscope for Terahertz Axion Detection. Physical Review Letters. 128: 131801 |
Gammell J, Buckley S, Nam SW, et al. (2021) Layer-Skipping Connections Improve the Effectiveness of Equilibrium Propagation on Layered Networks. Frontiers in Computational Neuroscience. 15: 627357 |
Gerrits T, Migdall A, Bienfang JC, et al. (2020) Calibration of free-space and fiber-coupled single-photon detectors. Metrologia. 57 |
McCaughan AN, Oh DM, Nam SW. (2019) A Stochastic SPICE Model for Superconducting Nanowire Single Photon Detectors and Other Nanowire Devices. Ieee Transactions On Applied Superconductivity : a Publication of the Ieee Superconductivity Committee. 29 |
McCaughan AN, Toomey E, Schneider M, et al. (2018) A kinetic-inductance-based superconducting memory element with shunting and sub-nanosecond write times. Superconductor Science & Technology. 32 |
Daveau RS, Balram KC, Pregnolato T, et al. (2017) Efficient fiber-coupled single-photon source based on quantum dots in a photonic-crystal waveguide. Optica. 4: 178-184 |
Chen L, Schwarzer D, Verma VB, et al. (2017) Mid-infrared Laser-Induced Fluorescence with Nanosecond Time Resolution Using a Superconducting Nanowire Single-Photon Detector: New Technology for Molecular Science. Accounts of Chemical Research |
Shainline JM, Buckley SM, Nader N, et al. (2017) Room-temperature-deposited dielectrics and superconductors for integrated photonics. Optics Express. 25: 10322-10334 |