Nonclassicality of photon-added squeezed vacuum and its decoherence in thermal environment
Abstract
We study the nonclassicality of photon-added squeezed vacuum (PASV) and its decoherence in thermal environment in terms of the sub-Poissonian statistics and the negativity of Wigner function (WF). By converting the PASV to a squeezed Hermite polynomial excitation state, we derive a compact expression for the normalization factor of m-PASV, which is an m-order Legendre polynomial of squeezing parameter r. We also derive the explicit expression of WF of m-PASV and find the negative region of WF in phase space. We show that there is an upper bound value of r for this state to exhibit sub-Poissonian statistics increasing as m increases. Then we derive the explicit analytical expression of time evolution of WF of m-PASV in the thermal channel and discuss the loss of nonclassicality using the negativity of WF. The threshold value of decay time is presented for the single PASV.
Keywords
Cite
@article{arxiv.0910.5358,
title = {Nonclassicality of photon-added squeezed vacuum and its decoherence in thermal environment},
author = {Li-yun Hu and Hong-yi Fan},
journal= {arXiv preprint arXiv:0910.5358},
year = {2015}
}
Comments
14 pages and 7 figures