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Covert Capacity of Bosonic Channels

Quantum Physics 2020-09-29 v3

Abstract

We investigate the quantum-secure covert-communication capabilities of lossy thermal-noise bosonic channels, the quantum-mechanical model for many practical channels. We determine the expressions for the covert capacity of these channels: Lno-EAL_{\text{no-EA}}, when Alice and Bob share only a classical secret, and LEAL_{\text{EA}}, when they benefit from entanglement assistance. We find that entanglement assistance alters the fundamental scaling law for covert communication. Instead of Lno-EAnrno-EA(n)L_{\text{no-EA}}\sqrt{n}-r_{\text{no-EA}}(n), rno-EA(n)=o(n)r_{\text{no-EA}}(n)=o(\sqrt{n}), entanglement assistance allows LEAnlognrEA(n)L_{\text{EA}}\sqrt{n}\log n-r_{\text{EA}}(n), rEA(n)=o(nlogn)r_{\text{EA}}(n)=o(\sqrt{n}\log n), covert bits to be transmitted reliably over nn channel uses.

Keywords

Cite

@article{arxiv.2002.06733,
  title  = {Covert Capacity of Bosonic Channels},
  author = {Christos N. Gagatsos and Michael S. Bullock and Boulat A. Bash},
  journal= {arXiv preprint arXiv:2002.06733},
  year   = {2020}
}

Comments

More details on Lemma 1. Other minor changes. Comments are welcome