Qubit masking in multipartite qubit system.

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Bibliographic Details
Title: Qubit masking in multipartite qubit system.
Authors: Shang, Wei-Min1 (AUTHOR) 1120190012@mail.nankai.edu.cn, Zhang, Fu-Lin2 (AUTHOR) flzhang@tju.edu.cn, Zhou, Jie1 (AUTHOR), Meng, Hui-Xian3 (AUTHOR), Chen, Jing-Ling1 (AUTHOR) chenjl@nankai.edu.cn
Source: Modern Physics Letters A. 7/20/2021, Vol. 36 Issue 21, pN.PAG-N.PAG. 11p.
Subjects: Qubits, Quantum entanglement, Quantum correlations, Quantum states
Abstract: The no-masking theories show that it is impossible to mask the set of all qubit states into the quantum correlation of bipartite qubit system or tripartite qubit system. In this paper, we give a new proof of the no-masking situation of the tripartite qubit system. Recent work has shown that there exists a universal masker which can mask an arbitrary set of qubit states in four-qubit systems perfectly by means of the maximum entangled states. Here we show that there exist more than one masking scheme even for the same multipartite qubit system. Basing on the maximum entangled states we give the deterministic masking scenario for N-qubit system. In practice, decoherence hinders us from obtaining the maximum entangled states. From this viewpoint, the masking scenario based on non-maximum entangled states becomes more universal. Furthermore, we provide an approximate quantum masking scenario and investigate the relation between approximate masking and quantum entanglement. [ABSTRACT FROM AUTHOR]
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Database: Engineering Source
Description
Abstract:The no-masking theories show that it is impossible to mask the set of all qubit states into the quantum correlation of bipartite qubit system or tripartite qubit system. In this paper, we give a new proof of the no-masking situation of the tripartite qubit system. Recent work has shown that there exists a universal masker which can mask an arbitrary set of qubit states in four-qubit systems perfectly by means of the maximum entangled states. Here we show that there exist more than one masking scheme even for the same multipartite qubit system. Basing on the maximum entangled states we give the deterministic masking scenario for N-qubit system. In practice, decoherence hinders us from obtaining the maximum entangled states. From this viewpoint, the masking scenario based on non-maximum entangled states becomes more universal. Furthermore, we provide an approximate quantum masking scenario and investigate the relation between approximate masking and quantum entanglement. [ABSTRACT FROM AUTHOR]
ISSN:02177323
DOI:10.1142/S021773232150156X