Entanglement improvement via a single-side squeezing-based quantum scissors

Author:

Liu Cunjin1,Zhan Mingxia1,Qiu Xiaojian2,Fu Zhen2,Zhang Huan3,Jia Fang1

Affiliation:

1. Jiangxi Normal University

2. Institute for Military-Civilian Integration of Jiangxi Province

3. Sun Yat-Sen University

Abstract

The entanglement improvement is theoretically investigated when applying a single-side quantum scissors (SSQS) with a local squeezing operation and two-asymmetrical beam splitters (BSs) to one mode of an input two-mode squeezed vacuum state (TMSV). It is found that the gain factor can be significantly enhanced with the increasing of local squeezing parameter at the expense of the success probability. The entanglement can also be further improved adjusting the local-squeezing or the transmissivity of BSs in a small initial squeezing region. In addition, our scheme is robust against the photon loss in TMSV. The improved effect becomes more obvious due to the presence of local squeezing. However, the case is not true for a more realistic SSQS. In both cases, the asymmetric BSs play a positive role for the entanglement improvement. These results suggest that the squeezing-based SSQS at single-photon level is beneficial to effectively improve the entanglement, which may have potential applications in quantum communication.

Funder

National Natural Science Foundation of China

Major Discipline Academic and Technical Leaders Training Program of Jiangxi Province

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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