Preserving photon qubits in an unknown quantum state with Knill Dynamical Decoupling - Towards an all optical quantum memory
Quantum Physics
2015-06-23 v1
Abstract
The implementation of polarization-based quantum communication is limited by signal loss and decoherence caused by the birefringence of a single-mode fiber. We investigate the Knill dynamical decoupling scheme, implemented using half-wave plates, to minimize decoherence and show that a fidelity greater than can be achieved in absence of rotation error and fidelity greater than can be achieved in presence of rotation error. Such a scheme can be used to preserve any quantum state with high fidelity and has potential application for constructing all optical quantum delay line, quantum memory, and quantum repeater.
Cite
@article{arxiv.1412.6525,
title = {Preserving photon qubits in an unknown quantum state with Knill Dynamical Decoupling - Towards an all optical quantum memory},
author = {Manish K. Gupta and Erik J. Navarro and Todd A. Moulder and Jason D. Mueller and Ashkan Balouchi and Katherine L. Brown and Hwang Lee and Jonathan P. Dowling},
journal= {arXiv preprint arXiv:1412.6525},
year = {2015}
}
Comments
8 pages, 6 figures