Back to Search Start Over

Registration of the quantum state of a single photon to create a satellite quantum network

Authors :
Kurochkin, V. L.
Khmelev, A. V.
Petrov, I. V.
Miller, A. V.
Feimov, A. A.
Mayboroda, V. F.
Balanov, M. Y.
Krushinsky, V. V.
Popov, A. A.
Kurochkin, Y. V.
Kurochkin, V. L.
Khmelev, A. V.
Petrov, I. V.
Miller, A. V.
Feimov, A. A.
Mayboroda, V. F.
Balanov, M. Y.
Krushinsky, V. V.
Popov, A. A.
Kurochkin, Y. V.
Source :
J. Phys. Conf. Ser.; Journal of Physics: Conference Series
Publication Year :
2020

Abstract

Artificial satellites employed as trusted nodes can increase the distance between two parties to establish quantum key distribution (QKD), unlike fiber based communication lines that are limited up to a few hundred kilometers. This report summarises our progress on a ground receiver for satellite QKD and its tracking receiving system (TRS). The authors demonstrate the operation of the TRS in practice and achieve standard tracking error of 1.4/Ltrad observing four satellites over 80% of the time they were available. The optical signal, which was the sunlight reflected of low Earth orbit satellites, was attenuated to a single photon level and was detected effectively using avalanche single photon detectors. The authors have thus proved that the developed system is capable of stable reception of quantum signal from a satellite. © Published under licence by IOP Publishing Ltd.

Details

Database :
OAIster
Journal :
J. Phys. Conf. Ser.; Journal of Physics: Conference Series
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1280536022
Document Type :
Electronic Resource