Strong converse exponent of channel interconversion

September 18, 2025 Β· Declared Dead Β· πŸ› arXiv.org

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Authors Aadil Oufkir, Yongsheng Yao, Mario Berta arXiv ID 2509.15200 Category quant-ph: Quantum Computing Cross-listed cs.IT Citations 0 Venue arXiv.org Last Checked 5 months ago
Abstract
In their seminal work, Bennett et al. [IEEE Trans. Inf. Theory (2002)] showed that, with sufficient shared randomness, one noisy channel can simulate another at a rate equal to the ratio of their capacities. We establish that when coding above this channel interconversion capacity, the exact strong converse exponent is characterized by a simple optimization involving the difference of the corresponding RΓ©nyi channel capacities with HΓΆlder dual parameters. We further extend this result to the entanglement-assisted interconversion of classical-quantum channels, showing that the strong converse exponent is likewise determined by differences of sandwiched RΓ©nyi channel capacities. The converse bound is obtained by relaxing to non-signaling assisted codes and applying HΓΆlder duality together with the data processing inequality for RΓ©nyi divergences. Achievability is proven by concatenating refined channel coding and simulation protocols that go beyond first-order capacities, attaining an exponentially small conversion error, remaining robust under small variations in the input distribution, and tolerating a sublinear gap between the conversion rates.
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