NIST Widens Superconducting Nanowire Single-Photon Detectors to 0.1 Millimeter and Cuts Dark Counts by Ten Orders of Magnitude, Published in Optica on August 19, 2026 Under DARPA's SynQuaNon Program
Defense Henry Quentir Defense Henry Quentir

NIST Widens Superconducting Nanowire Single-Photon Detectors to 0.1 Millimeter and Cuts Dark Counts by Ten Orders of Magnitude, Published in Optica on August 19, 2026 Under DARPA's SynQuaNon Program

A NIST team led by Kristen Parzuchowski and Adam McCaughan placed current-carrying niobium rails beside a tungsten silicide strip and ran superconducting nanowire single-photon detectors up to 0.1 millimeter wide at their intrinsic limit, cutting the dark count rate by ten orders of magnitude and reaching near-unity efficiency at 4 micrometers on a device 20 times wider than before. We read why a wide, quiet, polarization-blind photon counter matters for single-photon lidar, free-space laser links and low-light imaging, who gains, and what separates a sub-kelvin bench result from a receiver a program office can buy.
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