Comparison of Perfect and Quasi Werner States
arXiv:2004.03380 · doi:10.4204/EPTCS.315.11
Abstract
In this paper, we investigate comparatively the behaviors of quantum discord and concurrence for Werner states based on two bipartite entangled squeezed states. The maximally entangled squeezed states are regarded as a perfect-Werner states, while the non-maximally entangled squeezed states are called quasi-Werner states. We show that, the behavior of the quantum correlations keep unchanged for these two types of states. However, the quantum correlations amount presents in perfect-Werner states is very higher than that presents in quasi-Werner ones. Furthermore, we show that for large values of squeezed parameter the quasi-Werner states approaches the perfect-Werner states qualitatively and quantitatively.
In Proceedings QSQW 2020, arXiv:2004.01061
References in corpus (11)
- Quantum Computing
- Classical and quantum correlations under decoherence
- Experimental investigation of the dynamics of entanglement: Sudden death, complementarity, and continuous monitoring of the environment
- Experimental on-demand recovery of entanglement by local operations within non-Markovian dynamics
- Preserving entanglement and nonlocality in solid-state qubits by dynamical decoupling
- Entanglement irreversibility from quantum discord and quantum deficit
- Harnessing non-Markovian quantum memory by environmental coupling
- Universal freezing of quantum correlations within the geometric approach
- Unifying approach to the quantification of bipartite correlations by Bures distance
- Hidden entanglement in the presence of random telegraph dephasing noise
- Spin-echo entanglement protection from random telegraph noise