arXiv · 2501.13103
Achievability of Covert Quantum Communication
Abstract
We explore covert communication of qubits over an arbitrary quantum channel. Covert communication conceals the transmissions in the channel noise, ensuring that an adversary is unable to detect their presence. We show the achievability of a $\textit{square root law}$ (SRL) for quantum covert communication similar to that for classical: $M(n)\propto\sqrt{n}$ qubits can be transmitted covertly and reliably over $n$ uses of a general quantum channel. We lower bound $M(n)$ with and without assistance from a two-way covert classical channel. In the former case, we quantify the number of classical covert bits sufficient for our protocol.
Explore related subjects
Keep this discovery
Evan J. D. Anderson, Michael S. Bullock, Filip Rozpędek, Boulat A. Bash. 2025-01-22. Achievability of Covert Quantum Communication. https://arxiv.org/abs/2501.13103
Cite the original work for its findings. Save a collection to share your selection of sources.