Quantum BER estimation modelling and analysis for satellite‐based quantum key distribution scenarios

Author:

Khanna Abhishek1ORCID,Majumder Sambuddha1,Jain Adarsh1,Singh Dinesh Kumar1

Affiliation:

1. Space Applications Centre ISRO Ahmedabad India

Abstract

AbstractThe quantum communication channel is considered to be eavesdropped when the signal Quantum Bit Error Rate (QBER) exceeds a defined theoretical limit and is thus considered a figure of merit parameter for assessing the security of a quantum channel. This work presents a general mathematical model considering device imperfections and various sources of errors for estimating signal QBER in polarisation encoded satellite‐based QKD systems. QBER performance for satellite‐to‐ground downlink scenarios has been investigated for multiple sky brightness conditions (day time and night time operations), two operating wavebands: 800 and 1550 nm as well as for different quantum transmitter and quantum receiver architectures. Further, a novel QBER estimation analysis for inter‐satellite QKD links has also been presented. The estimation results obtained from the developed model have been validated against and found in good agreement with the measured results of the only reported satellite‐to‐ground QKD experiments till date. The presented QBER modelling and analysis will aid in system engineering and efficient design of future satellite‐based QKD systems.

Publisher

Institution of Engineering and Technology (IET)

Subject

Theoretical Computer Science,Electrical and Electronic Engineering,Computer Science Applications,Computer Networks and Communications,Computational Theory and Mathematics

Reference35 articles.

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4. Quantum cryptography using any two nonorthogonal states

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