Physical realization of realignment criteria using structural physical approximation
arXiv:2301.09884 · doi:10.1103/PhysRevA.108.012422
Abstract
Entanglement detection is an important problem in quantum information theory because quantum entanglement is a key resource in quantum information processing. Realignment criteria is a powerful tool for detection of entangled states in bipartite and multipartite quantum system. It is an important criteria for entanglement detection because it works well; not only for negative partial transpose entangled states (NPTES) but also for positive partial transpose entangled states (PPTES). Since the matrix corresponding to realignment map is indefinite so the experimental implementation of the map is an obscure task. In this work, firstly, we have approximated the realignment map to a positive map using the method of structural physical approximation (SPA) and then we have shown that the structural physical approximation of realignment map (SPA-R) is completely positive. Positivity of the constructed map is characterized using moments which can be physically measured. Next, we develop a separability criterion based on our SPA-R map in the form of an inequality and have shown that the developed criterion not only detect NPTES but also PPTES. We have provided some examples to support the results obtained. Moreover, we have analysed the error that may occur because of approximating the realignment map.
13 pages, 7 figures, 1 table, Appendix, Accepted in Physical Review A
References in corpus (10)
- Bloch vectors for qudits
- Covariance matrices and the separability problem
- Structural approximations to positive maps and entanglement breaking channels
- Optimal Entanglement Certification from Moments of the Partial Transpose
- Bipartite quantum systems: on the realignment criterion and beyond
- Designing Quantum Information Processing via Structural Physical Approximation
- Quantum separability criteria based on realignment moments
- Realignment separability criterion assisted with filtration for detecting continuous-variable entanglement
- Structured Negativity: A physically realizable measure of entanglement based on structural physical approximation
- Search for an efficient entanglement witness operator for bound entangled states in bipartite quantum systems
Cited by in corpus (4)
- Entanglement detection in arbitrary dimensional bipartite quantum systems through partial realigned moments
- Theoretical proposal for the experimental realization of realignment operation
- A unifying separability criterion based on extended correlation tensor
- Detection of entanglement via moments of positive maps