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Josephson current and proximity effect in Luttinger liquids

机译:约瑟夫森在Luttinger液体中的电流和邻近效应

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摘要

A theory describing a one-dimensional Luttinger liquid in contact with a superconductor is developed. Boundary conditions for the fermion fields describing Andreev reflection at the contacts are derived and used to construct a bosonic representation of the fermions. The Josephson current through a superconductor/Luttinger liquid/superconductor junction is considered for both perfectly and poorly transmitting interfaces. In the former case, the Josephson current at low temperatures is found to be essentially unaffected by electron-electron interactions. In the latter case, significant renormalization of the Josephson current occurs. The profile of the (induced) condensate wave function in a semi-infinite Luttinger liquid in contact with a superconductor is shown to decay as a power law, the exponent depending on the sign and strength of the interactions. In the case of repulsive (attractive) interactions the decay is faster (slower) than in their absence. An equivalent method of calculating the Josephson current through a Luttinger liquid, which employs the bosonization of the system as a whole (i.e., superconductor, as well as Luttinger liquid) is developed and shown to give the results equivalent to those obtained via boundary condition describing Andreev reflection.
机译:建立了描述与超导体接触的一维Luttinger液体的理论。得出描述接触处安德列夫反射的费米子场的边界条件,并将其用于构造费米子的玻色子表示。对于完美和传输不良的界面,都考虑了通过超导体/卢廷格液体/超导体结的约瑟夫森电流。在前一种情况下,发现低温下的约瑟夫森电流基本上不受电子-电子相互作用的影响。在后一种情况下,会发生约瑟夫森电流的显着重归一化。与超导体接触的半无限Luttinger液体中的(诱导)凝结波函数的轮廓显示为幂定律衰减,该指数取决于相互作用的符号和强度。在排斥(吸引)相互作用的情况下,衰变比没有相互作用的情况更快(更慢)。提出了一种等效的计算通过Luttinger液体的约瑟夫森电流的方法,该方法将整个系统(即超导体以及Luttinger液体)的玻化作用都加以利用,并显示出与通过边界条件描述获得的结果等效的结果。安德列夫反射。

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