Abstract <p>The results of experimental modeling of a satellite communication channel using a superconducting single-photon detector are presented. The key parameters of laser radiation (integrated power, duration of optical pulses, etc.) necessary to ensure a required level of bit error rates were determined; the results were compared with a computational theoretical model. In addition, the impact of the Doppler effect on the operability of the communication system was assessed.</p>

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Optical Satellite Communication Using a Superconducting Nanowire Single-Photon Detector

  • V. E. Merzlinkin,
  • A. V. Khmelev,
  • V. L. Kurochkin

摘要

Abstract

The results of experimental modeling of a satellite communication channel using a superconducting single-photon detector are presented. The key parameters of laser radiation (integrated power, duration of optical pulses, etc.) necessary to ensure a required level of bit error rates were determined; the results were compared with a computational theoretical model. In addition, the impact of the Doppler effect on the operability of the communication system was assessed.