Optimization of state parameters in displacement assisted photon subtracted measurement-device-independent quantum key distribution

Fuente: arXiv
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Main Authors: Kumar, Chandan, Chatterjee, Sarbani, Arvind
Format: Preprint
Published: 2024
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_version_ 1866917686650339328
author Kumar, Chandan
Chatterjee, Sarbani
Arvind
author_facet Kumar, Chandan
Chatterjee, Sarbani
Arvind
contents Non-Gaussian operations, in particular, photon subtraction (PS), have been shown to enhance the performance of various quantum information processing tasks including continuous variable measurement device independent quantum key distribution (CV-MDI-QKD). This work investigates the role of non-Gaussian resource states, namely, the photon subtracted two-mode squeezed coherent (PSTMSC) (which include photon subtracted two-mode squeezed vacuum (PSTMSV) as a special case) states in CV-MDI-QKD. To this end, we derive the Wigner characteristic function for the resource states, from which the covariance matrix and, finally, the secret key rate expressions are extracted. The optimization of the state parameters is undertaken to find the most suitable resource states in this family of states. There have been previous studies on the PSTMSV and PSTMSC states in CV-MDI-QKD that make use of PS operation. We evaluate such proposals and find to our surprise that both PSTMSC and PSTMSV resource states underperform as compared to the TMSV state rendering PS operation and displacement undesirable.
format Preprint
id arxiv_https___arxiv_org_abs_2406_04270
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Optimization of state parameters in displacement assisted photon subtracted measurement-device-independent quantum key distribution
Kumar, Chandan
Chatterjee, Sarbani
Arvind
Quantum Physics
Non-Gaussian operations, in particular, photon subtraction (PS), have been shown to enhance the performance of various quantum information processing tasks including continuous variable measurement device independent quantum key distribution (CV-MDI-QKD). This work investigates the role of non-Gaussian resource states, namely, the photon subtracted two-mode squeezed coherent (PSTMSC) (which include photon subtracted two-mode squeezed vacuum (PSTMSV) as a special case) states in CV-MDI-QKD. To this end, we derive the Wigner characteristic function for the resource states, from which the covariance matrix and, finally, the secret key rate expressions are extracted. The optimization of the state parameters is undertaken to find the most suitable resource states in this family of states. There have been previous studies on the PSTMSV and PSTMSC states in CV-MDI-QKD that make use of PS operation. We evaluate such proposals and find to our surprise that both PSTMSC and PSTMSV resource states underperform as compared to the TMSV state rendering PS operation and displacement undesirable.
title Optimization of state parameters in displacement assisted photon subtracted measurement-device-independent quantum key distribution
topic Quantum Physics
url https://arxiv.org/abs/2406.04270