Relationship between probabilities of the state transfers and entanglements in spin systems with simple geometrical configurations
arXiv:0901.3424 · doi:10.1103/PhysRevA.79.042310
Abstract
In this paper we derive analytical relations between probabilities of the excited state transfers and entanglements calculated by both the Wootters and positive partial transpose (PPT) criteria for the arbitrary spin system with single excited spin in the external magnetic field and Hamiltonian commuting with . We apply these relations to study the arbitrary state transfers and entanglements in the simple systems of nuclear spins having two- and three-dimensional geometrical configurations with Hamiltonian. It is shown that High-Probability State Transfers (HPSTs) are possible among all four nodes placed in the corners of the rectangle with the proper ratio of sides as well as among all eight nodes placed in the corners of the parallelepiped with the proper ratio of sides. Entanglements responsible for these HPSTs have been identified.
27pages, 10 figures
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- Quantum state transfer in spin chains with q-deformed interaction terms
- Robustness of spin-chain state-transfer schemes
- Super-quantum discord in ferromagnetic and antiferromagnetic materials
- M-neighbor approximation in one-qubit state transfer along zigzag and alternating spin-1/2 chains
- Nearest-neighbor approximation in one-excitation state evolution along spin-1/2 chain governed by XX-Hamiltonian