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Demonstration of Gigabit-per-second and higher data rates at extremely high efficiency using superconducting nanowire single photon detectors
Conference proceeding

Demonstration of Gigabit-per-second and higher data rates at extremely high efficiency using superconducting nanowire single photon detectors

Bryan S. Robinson, Andrew J. Kerman, Eric A. Dauler, Don M. Boroson, Scott A. Hamilton, Joel K. W. Yang, Vikas Anant and Karl K. Berggren
FREE-SPACE LASER COMMUNICATIONS VII, Vol.6709(1), pp.67090Z-67090Z-8
Proceedings of SPIE
01/01/2007

Abstract

Optics Physical Sciences Science & Technology Technology Telecommunications
Superconducting nanowire single photon detectors have recently been demonstrated as viable candidates for photon-counting optical receivers operating at data rates in excess of 100 Mbit/s. In this paper, we discuss techniques for extending these data rates to rates > 1 Gbit/s. We report on a recent demonstration of a 2-element nanowire detector array operating at a source data rate of 1.25 Gbit/s. We also describe techniques for emulating larger arrays of detectors using a single detector. We use these techniques to demonstrate photon-counting receiver operation at data rates from 780-Mbit/s to 2.5 Gbit/s with sensitivities ranging from 1.1 to 7.1 incident photons per bit.

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