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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Non-equilibrium entanglement dynamics of a two-qubit Heisenberg XY system in the presence of an inhomogeneous magnetic field and spin-orbit interaction
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Non-equilibrium entanglement dynamics of a two-qubit Heisenberg XY system in the presence of an inhomogeneous magnetic field and spin-orbit interaction

机译:在非均匀磁场和自旋轨道相互作用下两量子位海森堡XY系统的非平衡纠缠动力学

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摘要

Entanglement dynamics of an open two-qubit anisotropic XY Heisenberg system is investigated in the presence of an inhomogeneous magnetic field and spin-orbit interaction. We suppose that each qubit interacts with a separate thermal reservoir which is held in its own temperature. The asymptotical and the dynamical behavior of entanglement are analyzed. To distinguish between entanglement induced by the environment and entanglement due to the presence of inter-qubit interaction, the effects of spin-orbit parameter D and temperature difference parameter ΔT on the entanglement of the system have been investigated. We show that for a fixed set of the system parameters, entanglement can be produced just by adjusting the temperature difference between the reservoirs. The size of this entanglement, which is induced by temperature difference of reservoirs, increases as the spin-orbit parameter D increases. Also we find that, this environment induced entanglement can be improved if the qubit influenced by the weaker magnetic field is in contact with the hotter reservoir, i.e. indirect geometry of connection. In this case, the amount of asymptotic entanglement increases as D increases. Regardless of the geometry of connection, increasing D causes the appearance of entanglement in the larger regions of T_(M) - ΔT plane, therefore entanglement can exist in higher temperatures and temperature differences. Furthermore, increasing D enhances the amount of entanglement in these regions. We also show that the state of the system can be found in the maximally entangled state for the case of zero temperature reservoirs and large amount of the spin-orbit parameter.
机译:在不均匀磁场和自旋轨道相互作用的情况下,研究了一个开放的两比特各向异性XY Heisenberg系统的纠缠动力学。我们假设每个量子位与一个单独的储热器相互作用,该储热器保持在自己的温度下。分析了纠缠的渐近性和动力学行为。为了区分环境引起的纠缠和量子位间相互作用的存在所引起的纠缠,研究了自旋轨道参数D和温差参数ΔT对系统纠缠的影响。我们表明,对于一组固定的系统参数,仅通过调整水库之间的温差即可产生纠缠。随着自旋轨道参数D的增加,由储层温度差异引起的纠缠大小增加。我们还发现,如果受较弱磁场影响的量子比特与较热的储层(即间接的连接几何体)接触,则可以改善这种环境诱导的纠缠。在这种情况下,渐进纠缠的量随D的增加而增加。无论连接的几何形状如何,增大D都会在T_(M)-ΔT平面的较大区域中出现缠结,因此缠结可能存在于较高的温度和温差中。此外,增加D会增加这些区域中的纠缠量。我们还表明,对于零温度储层和大量自旋轨道参数的情况,可以在最大纠缠状态下找到系统状态。

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