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Eight-fold signal amplification of a superconducting nanowire single-photon detector using a multiple-avalanche architecture

Published 5 Aug 2014 in physics.ins-det, physics.optics, and quant-ph | (1408.1124v1)

Abstract: Superconducting nanowire avalanche single-photon detectors (SNAPs) with n parallel nanowires are advantageous over single-nanowire detectors because their output signal amplitude scales linearly with n. However, the SNAP architecture has not been viably demonstrated for n > 4. To increase n for larger signal amplification, we designed a multi-stage, successive-avalanche architecture which used nanowires, connected via choke inductors in a binary-tree layout. We demonstrated an avalanche detector with n = 8 parallel nanowires and achieved eight-fold signal amplification, with a timing jitter of 54 ps.

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