Chiral Bell-state transfer via dissipative Liouvillian dynamics
Abstract
Chiral state transfer along closed loops in the vicinity of an exceptional point is one of the many counter-intuitive observations in non-Hermitian physics. The application of this property beyond proof-of-principle in quantum physics, is an open question. In this work, we demonstrate chiral state conversion between singlet and triplet Bell states through fully-quantum Liouvillian dynamics. Crucially, we demonstrate that this property can be used for the chiral production of Bell states from separable states with a high fidelity and for a large range of parameters. Additionally, we show that the removal of quantum jumps from the dynamics through postselection can result in near-perfect Bell states from initially separable states. Our work presents the first application of chiral state transfer in quantum information processing and demonstrates a novel way to control entangled states by means of dissipation engineering.
Keywords
Cite
@article{arxiv.2310.11381,
title = {Chiral Bell-state transfer via dissipative Liouvillian dynamics},
author = {Shishir Khandelwal and Weijian Chen and Kater W. Murch and Géraldine Haack},
journal= {arXiv preprint arXiv:2310.11381},
year = {2024}
}
Comments
4+6 pages, 7 figures