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Bibliographic Details
Main Authors: Pathania, Neha, Mishra, Sandeep, Pathak, Anirban
Format: Preprint
Published: 2026
Subjects:
Online Access:https://arxiv.org/abs/2602.22646
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author Pathania, Neha
Mishra, Sandeep
Pathak, Anirban
author_facet Pathania, Neha
Mishra, Sandeep
Pathak, Anirban
contents An experimental implementation of the Coherent One-Way Quantum Key Distribution (COW-QKD) protocol is reported under realistic conditions, and a clean and easy-to-use framework for performing finite key analysis of the COW-QKD protocol is provided by extending a set of existing results. The framework provided here is used to perform finite key rate analysis of the COW-QKD protocol with respect to the actual parameters used in the experimental realization reported here. The system is kept running for several hours with different experimental parameters and stable secure key rates between 1.2 to 1.6 kbps are observed. In addition, QBER, phase error rate and secure key rate are obtained under finite key analysis, and it is shown that COW-QKD is secure for medium-range transmissions (up-to ~ 156 (171) km of optical fiber with 0.2 dB loss per km if detector efficiency is 0.1 (0.2) and other parameters are same as those used in this experiment).
format Preprint
id arxiv_https___arxiv_org_abs_2602_22646
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Finite key analysis of experimentally realized practical COW-QKD protocol
Pathania, Neha
Mishra, Sandeep
Pathak, Anirban
Quantum Physics
An experimental implementation of the Coherent One-Way Quantum Key Distribution (COW-QKD) protocol is reported under realistic conditions, and a clean and easy-to-use framework for performing finite key analysis of the COW-QKD protocol is provided by extending a set of existing results. The framework provided here is used to perform finite key rate analysis of the COW-QKD protocol with respect to the actual parameters used in the experimental realization reported here. The system is kept running for several hours with different experimental parameters and stable secure key rates between 1.2 to 1.6 kbps are observed. In addition, QBER, phase error rate and secure key rate are obtained under finite key analysis, and it is shown that COW-QKD is secure for medium-range transmissions (up-to ~ 156 (171) km of optical fiber with 0.2 dB loss per km if detector efficiency is 0.1 (0.2) and other parameters are same as those used in this experiment).
title Finite key analysis of experimentally realized practical COW-QKD protocol
topic Quantum Physics
url https://arxiv.org/abs/2602.22646