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Impurity-induced quantum phase transitions and magnetic order in conventional superconductors: Competition between bound and quasiparticle states

机译:常规超导体中杂质诱导的量子相变和磁性顺序:束缚态和准粒子态之间的竞争

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摘要

We theoretically study bound states generated by magnetic impurities within conventional s-wave superconductors, both analytically and numerically. In determining the effect of the hybridization of two such bound states on the energy spectrum as a function of magnetic exchange coupling, relative angle of magnetization, and distance between impurities, we find that quantum phase transitions can be modulated by each of these parameters. Accompanying such transitions, there is a change in the preferred spin configuration of the impurities. Although the interaction between the impurity spins is overwhelmingly dominated by the quasiparticle contribution, the ground state of the system is determined by the bound-state energies. Self-consistently calculating the superconducting order parameter, we find a discontinuity when the system undergoes a quantum phase transition as indicated by the bound-state energies.
机译:我们在理论上通过分析和数值研究了常规s波超导体中的磁性杂质产生的束缚态。在确定两种这样的键合态的杂化对能谱的影响时,取决于磁交换耦合,相对磁化角和杂质之间的距离,我们发现可以通过这些参数中的每一个来调制量子相变。伴随这样的转变,杂质的优选自旋构型发生了变化。尽管杂质自旋之间的相互作用主要由准粒子贡献决定,但系统的基态由结合态能量决定。自洽地计算超导阶数参数,当系统经历如由束缚态能量指示的量子相变时,我们发现不连续。

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