Better transmission with lower capacity: lossy compression over quantum channels
Abstract
Shannon's channel coding theorem describes the maximum possible rate of reliable information transfer through a classical noisy communication channel. It, together with the source coding theorem, characterizes lossless channel communication in the classical regime. Lossy compression scenarios require the additional description provided by rate-distortion theory, which characterizes the trade-off between compression rate and the distortion of the compressed signal. Even in this context, the capacity characterizes the usefulness of a channel -- a channel with more capacity will always outperform a channel with less capacity. We show that this is no longer true when sending classical information over a quantum channel. In particular, we find a pair of quantum channels where the channel with the lower capacity causes less distortion than the higher capacity channel when both are used at a fixed rate.
Keywords
Cite
@article{arxiv.2105.06617,
title = {Better transmission with lower capacity: lossy compression over quantum channels},
author = {Sristy Agrawal and Rajashik Tarafder and Graeme Smith and Arup Roy and Manik Banik},
journal= {arXiv preprint arXiv:2105.06617},
year = {2021}
}
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