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Two-channel Kondo phases and frustration-induced transitions in triple quantum dots

机译:三通道量子点中的两通道近藤相位和受挫感诱导的跃迁

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We study theoretically a ring of three quantum dots mutually coupled by antiferromagnetic exchange interactions and tunnel-coupled to two metallic leads: the simplest model in which the consequences of local frustration arising from internal degrees of freedom may be studied within a two-channel environment. Two-channel Kondo (2CK) physics is found to predominate at low energies in the mirror-symmetric models considered, with a residual spin-1/2 overscreened by coupling to both leads. It is however shown that two distinct 2CK phases, with different ground-state parities, arise on tuning the interdot exchange couplings. In consequence a frustration-induced quantum phase transition occurs, the 2CK phases being separated by a quantum critical point for which an effective low-energy model is derived. Precisely at the transition, parity mixing of the quasidegenerate local trimer states acts to destabilize the 2CK fixed points; and the critical fixed point is shown to consist of a free pseudospin together with effective one-channel spin quenching, itself reflecting underlying channel anisotropy in the inherently two-channel system. Numerical renormalization group techniques and physical arguments are used to obtain a detailed understanding of the problem, including study of both fhermodynamic and dynamical properties of the system.
机译:我们从理论上研究了一个由三个量子点组成的环,这些环通过反铁磁交换相互作用相互耦合,并隧道耦合至两个金属引线:最简单的模型,其中可以在两个通道的环境中研究内部自由度引起的局部挫败的后果。在所考虑的镜像对称模型中,发现两通道近藤(2CK)物理在低能量中占主导地位,通过耦合到两条引线对剩余自旋1/2进行过分屏蔽。然而,示出了在调整点间交换耦合时出现具有不同基态奇偶性的两个不同的2CK相位。结果,发生了由挫折引起的量子相变,2CK相被一个量子临界点分开,为此,可以得出一个有效的低能模型。恰好在过渡时,quasidegenerate局部三聚态的奇偶混合会破坏2CK固定点的稳定性;临界固定点由自由的假自旋和有效的单通道自旋猝灭组成,它本身反映了固有的固有的两通道系统中的通道各向异性。使用数值重归一化组技术和物理参数来获得对该问题的详细理解,包括研究系统的热力学和动力学特性。

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