Quantum Capacity of a dephasing channel with memory
Abstract
We show that the amount of coherent quantum information that can be reliably transmitted down a dephasing channel with memory is maximized by separable input states. In particular, we model the channel as a Markov chain or a multimode environment of oscillators. While in the first model the maximization is achieved for the maximally mixed input state, in the latter it is convenient to exploit the presence of a decoherence-protected subspace generated by memory effects. We explicitly compute the quantum channel capacity for the first model while numerical simulations suggest a lower bound for the latter. In both cases memory effects enhance the coherent information. We present results valid for arbitrary size of the input.
Cite
@article{arxiv.quant-ph/0703014,
title = {Quantum Capacity of a dephasing channel with memory},
author = {Antonio D'Arrigo and Giuliano Benenti and Giuseppe Falci},
journal= {arXiv preprint arXiv:quant-ph/0703014},
year = {2007}
}
Comments
Revised version, to be published in New Journal of Physics