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Tunneling Conductance in d_(x^2-y^2)+id_(xy) Mixed Wave Superconductor Graphene Junctions

Tunneling Conductance in d_(x^2-y^2)+id_(xy) Mixed Wave Superconductor Graphene Junctions
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摘要 Using the extended Blonder-Tinkham-Klapwijk formalism, we investigate the conductance spectra of normal metal/dx2-y2 + idxy mixed wave superconductor graphene junctions. It is found that the conductance spectra vary strongly with the orientation of the gap and the amplitude ratio (Δ1/Δ0) of two components for dx2-y2 + idxy mixed wave. The zero bias conductance is nearly 2 and the conductance peak vanishes in doped graphene for a = 0 and Δ1/Δ0 = 1. The conductance increases with increasing the amplitude ratio of two components for α =π/4 and Δ1/Δ0 -- 1. The ZBCP becomes observable wide with 1 〈 EF/Δ0 〈 100 for α= π/4 and Δ1/Δ0 = 1. This property is different from that in normal metal/dx2-y2 wave superconductor graphene junctions.
作者 李晓薇
出处 《Communications in Theoretical Physics》 SCIE CAS CSCD 2010年第12期1139-1143,共5页 理论物理通讯(英文版)
基金 Supported by the National Natural Science Foundation of China under Grant No. 11074088
关键词 dx2-y2+ idxy wave superconductor GRAPHENE tunneling conductance 掺杂石墨 混合波 超导结 电导 2型 隧道 形式主义 幅度比
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