论文标题

通过过渡金属和稀土杂质效应对超导体的量子纠缠以及潜在散射对量子相变的作用

Tuning of quantum entanglement of a superconductor by Transition-metal and Rare-earth impurity effect and the role of potential scattering on quantum phase transition

论文作者

Ebrahimian, N., Khosrojerdi, M., Afzali, R.

论文摘要

By considering transition-metal (Shiba-Rusinov model) and rare-earth metal impurities (Abrikosov-Gor'kov theory) effect on a many-body system, i.e., a BCS s-wave superconductor, quantum bipartite entanglement of two electrons of the Cooper pairs in terms of the exchange interaction, J, the potential scattering, V (contrary to expectations playing an important role), and the distance of two electron通过使用两电子旋转空间密度矩阵(Werner State),在零温度下计算库珀对的旋转。在过渡金属的情况下,我们发现了新的量子相变(QPTS)。 J的变化导致具有局部激发状态,V和对相互作用(通过能量隙)导致QPT的位移(相互作用朝着相同的方向起作用,但是有时两对相互作用会导致与其他相互作用的竞争),无论其对同意价值的影响如何。要使转折点是一个QPT点,通过降低| J |,该系统不需要具有较大的V。对于非磁性和磁性(稀有)杂质案例,讨论了所有有限和无限Debye频率的同意与距离和碰撞时间。可以通过杂质调节量子相关性,系统的不稳定和更重要的QPT。

By considering transition-metal (Shiba-Rusinov model) and rare-earth metal impurities (Abrikosov-Gor'kov theory) effect on a many-body system, i.e., a BCS s-wave superconductor, quantum bipartite entanglement of two electrons of the Cooper pairs in terms of the exchange interaction, J, the potential scattering, V (contrary to expectations playing an important role), and the distance of two electron spins of the Cooper pair is calculated at zero temperature by using two-electron spin-space density matrix (Werner state). In transition-metal case, we found new quantum phase transitions (QPTs). The changes of J, which causes to have localized excited state, V and the pair interaction (via energy gap) lead to the displacement of the QPTs (interactions act in the same direction, however sometimes the pair interaction causes the competition with other interactions), regardless of their effects on the value of concurrence. To have the turning point, which is a QPT point, by the reduction of |J|, the system doesn't need to have the large V. For non-magnetic and magnetic (rare-earth) impurity cases, the concurrence versus the distance and collision times is discussed for all finite and infinite Debye frequency. The quantum correlation, instability of the system and what's more important QPT can be tuned by impurity.

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