Dynamic Entanglement Evolution of Two-qubit XYZ Spin Chain in Markovian Environment
Abstract
We propose a new approach called Ket-Bra Entangled State (KBES) Method for converting master equation into Schr\"odinger-like equation. With this method, we investigate decoherence process and entanglement dynamics induced by a 2-qubit spin chain that each qubit coupled with reservoir. The spin chain is an anisotropy XYZ Heisenberg model in the external magnetic field B, the corresponding master equation is solved concisely by KBES method; Furthermore, the effects of anisotropy, temperature, external field and initial state on concurrence dynamics is analyzed in detail for the case that initial state is Extended Wenger-Like(EWL) state. Finally we research the coherence and concurrence of the final state (namely the density operator for time tend to infinite)
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