Test of Common Sense in Quantum Copying Process
Abstract
It is believed that the more we have {\it a priori} information on input states, the better we can make the quality of clones in quantum cloning machines. This common sense idea was confirmed several years ago by analyzing a situation, where the input state is either one of two non-orthogonal states. If the {\it a priori} information is measured by the Shannon entropy, common sense predicts that the quality of the clone becomes poorer with increasing , where is the number of possible input states. We show, however, that the {\it a priori} information measured by the Shannon entropy does not affect the quality of the clones. Instead the no-cloning theorem and `denseness' of the possible input states play important roles in determining the quality. Specifically, the factor `denseness' plays a more crucial role than the no-cloning theorem when .
Cite
@article{arxiv.1012.0115,
title = {Test of Common Sense in Quantum Copying Process},
author = {Mi-Ra Hwang and Eylee Jung and Kap Soo Jang and Mu-Seong Kim and DaeKil Park and Eui-Soon Yim and Hungsoo Kim and Jin-Woo Son},
journal= {arXiv preprint arXiv:1012.0115},
year = {2010}
}
Comments
11 pages, 1 figure