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Quantum Fisher Information of a Teleported State in Heisenberg XYZ Chain With Magnetic Field and Kaplan–Shekhtman–Entin-Wohlman–Aharony Interaction

机译:Heisenberg XYZ链中传送状态的Quantum Fisher信息与磁场和Kaplan-Shekhtman-Entin-Wohlman-aharony互动

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摘要

One of the teleportation versions is applied to convey an entangled two-qubit system via a class of a two-qubit XYZ Heisenberg chain model. At thermal equilibrium, the exact solution of the XYZ model with an external magnetic field and the Kaplan–Shekhtman–Entin-Wohlman–Aharony interaction (KSEWA-interaction) is proposed in $X$ , and $Z$ direction. The teleported quantum Fisher information is studied, where we estimate the weight parameter $heta $ , temperature and the strength parameter of KSEWA-interaction. It is found that, the strength of the KSEWA-interaction and the magnetic field be of benefit in the case of estimating the weight function. Meanwhile, the temperature decreases the teleported information.
机译:其中一个传送版本应用于通过一类双Qubit XYZ Heisenberg链模型传达纠缠的双态系统。在热平衡下,用外部磁场和Kaplan-shekhtman-entin-wohlman-aharony交互(ksewa-interaction)的XYZ模型的精确解决方案以$ x $和$ z $方向提出。研究了传送的量子Fisher信息,在那里估计重量参数$ Theta $,温度和ksewa互动强度参数。发现,在估计重量函数的情况下,ksewa相互作用和磁场的强度是有益的。同时,温度降低了传送信息。

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