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Maximal coin-walker entanglement in a ballistic quantum walk

Quantum Physics 2022-05-11 v1

Abstract

We report the position-inhomogeneous quantum walk (IQW) can be utilized to produce the maximal high dimensional entanglement while maintaining the quadratic speedup spread of the wave-function. Our calculations show that the maximal coin-walker entanglement can be generated in any odd steps or asymptotically in even steps, and the nearly maximal entanglement can be obtained in even steps after 22. We implement the IQW by a stable resource-saving time-bin optical network, in which a polarization Sagnac loop is employed to realize the precisely tunable phase shift. Our approach opens up an efficient way for high-dimensional entanglement engineering as well as promotes investigations on the role of coin-walker interactions in QW based applications.

Keywords

Cite

@article{arxiv.2202.09624,
  title  = {Maximal coin-walker entanglement in a ballistic quantum walk},
  author = {Rong Zhang and Ran Yang and Jian Guo and Chang-Wei Sun and Jia-Chen Duan and Heng Zhou and Zhenda Xie and Ping Xu and Yan-Xiao Gong and Shi-Ning Zhu},
  journal= {arXiv preprint arXiv:2202.09624},
  year   = {2022}
}

Comments

7 pages, 6 figures, 1 table