Toward Practical Two-Way Covert Communication

Fuente: arXiv
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Main Authors: Fessatidis, Paul N., Wallis, Wyatt, Cooper, Tae E., Meisner, Mark J., Bucay, Jaim, Guha, Saikat, Jenkins, Shelbi L., Bullock, Michael S., Bash, Boulat A.
Format: Preprint
Published: 2026
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author Fessatidis, Paul N.
Wallis, Wyatt
Cooper, Tae E.
Meisner, Mark J.
Bucay, Jaim
Guha, Saikat
Jenkins, Shelbi L.
Bullock, Michael S.
Bash, Boulat A.
author_facet Fessatidis, Paul N.
Wallis, Wyatt
Cooper, Tae E.
Meisner, Mark J.
Bucay, Jaim
Guha, Saikat
Jenkins, Shelbi L.
Bullock, Michael S.
Bash, Boulat A.
contents We study two-way covert communication schemes, where information is transmitted by passively modulating a reflected signal back to the source. We consider optical systems, described by quantum bosonic channels. While broadband classical and quantum light sources offer high covert throughput in theory, the associated mode-matching and phase-synchronization requirements make them impractical. Therefore, we employ a narrowband laser source to experimentally demonstrate a proof-of-concept two-way covert communication system, where the adversary is assumed to be quantum-capable. Furthermore, we propose a correlator-based receiver that attains the broadband gain offered by a quantum light source without the need for precise mode matching.
format Preprint
id arxiv_https___arxiv_org_abs_2605_29840
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Toward Practical Two-Way Covert Communication
Fessatidis, Paul N.
Wallis, Wyatt
Cooper, Tae E.
Meisner, Mark J.
Bucay, Jaim
Guha, Saikat
Jenkins, Shelbi L.
Bullock, Michael S.
Bash, Boulat A.
Quantum Physics
We study two-way covert communication schemes, where information is transmitted by passively modulating a reflected signal back to the source. We consider optical systems, described by quantum bosonic channels. While broadband classical and quantum light sources offer high covert throughput in theory, the associated mode-matching and phase-synchronization requirements make them impractical. Therefore, we employ a narrowband laser source to experimentally demonstrate a proof-of-concept two-way covert communication system, where the adversary is assumed to be quantum-capable. Furthermore, we propose a correlator-based receiver that attains the broadband gain offered by a quantum light source without the need for precise mode matching.
title Toward Practical Two-Way Covert Communication
topic Quantum Physics
url https://arxiv.org/abs/2605.29840