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Non-Fermi-liquid quantum impurity physics from non-Abelian quantum Hall states

机译:非阿贝尔量子霍尔态的非费米液体量子杂质物理学

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摘要

We study the physics of electron tunneling between multiple quantum dots and the edge of a quantum Hall state. Our results generalize earlier work [Fiete, Bishara, and Nayak, Phys. Rev. Lett. 101, 176801 (2008)] in which it was shown that a single quantum dot tunnel coupled to a non-Abelian quantum Hall state can realize a stable multichannel Kondo fixed point at low energy. In this work, we investigate the physics of multiple dots and find that a rich set of possible low-energy fixed points arises, including those with non-Fermi-liquid properties. Previously unidentified fixed points may also be among the possibilities. We examine both the situation where the dots are spatially separated and where they are in close proximity. We discuss the relation to previous work on two-impurity Kondo models in Fermi liquids and highlight new research directions in multiple quantum impurity problems.
机译:我们研究了多个量子点与量子霍尔态边缘之间电子隧穿的物理学。我们的研究结果概括了早期的工作[Fiete,Bishara和Nayak,Phys。牧师101,176801(2008)],其中显示了耦合到非阿贝尔量子霍尔态的单个量子点隧道可以在低能量下实现稳定的多通道近藤固定点。在这项工作中,我们研究了多个点的物理原理,发现出现了许多可能的低能量固定点,包括那些具有非费米液体性质的固定点。以前无法确定的固定点也可能在其中。我们同时检查了点在空间上分离和紧密相邻的情况。我们讨论与费米液体中两个杂质的近藤近藤模型的先前工作的关系,并重点介绍在多个量子杂质问题中的新研究方向。

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