Channel capacities via $p$-summing norms
Abstract
In this paper we show how \emph{the metric theory of tensor products} developed by Grothendieck perfectly fits in the study of channel capacities, a central topic in \emph{Shannon's information theory}. Furthermore, in the last years Shannon's theory has been generalized to the quantum setting to let the \emph{quantum information theory} step in. In this paper we consider the classical capacity of quantum channels with restricted assisted entanglement. In particular these capacities include the classical capacity and the unlimited entanglement-assisted classical capacity of a quantum channel. To deal with the quantum case we will use the noncommutative version of -summing maps. More precisely, we prove that the (product state) classical capacity of a quantum channel with restricted assisted entanglement can be expressed as the derivative of a completely -summing norm.
Cite
@article{arxiv.1305.1020,
title = {Channel capacities via $p$-summing norms},
author = {Marius Junge and Carlos Palazuelos},
journal= {arXiv preprint arXiv:1305.1020},
year = {2015}
}
Comments
V2: Some proofs have been explained in more detail. New references added. Same results