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Superconducting switch made of graphene-nanoribbon junctions

机译:石墨烯-纳米带结制成的超导开关

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The transmission of superconductor-graphene nanoribbon-superconductor junctions (SGS) has been studied by the non-equilibrium Green's function method. It is found that the on-site potential U in the center zigzag graphene nanoribbon (ZGNR) of the SGS junction plays an important role in the magnitude of the supercurrent I-c. As the effective Fermi energy mu(eff) (mu(eff) = mu(F)-U) goes from negative to positive, the SGS junction would suddenly transform from an 'OFF' state to an 'ON' state. And, as mu(eff) increases further, the Ic will continue to increase. This switching behavior of the SGS junction shares the same origin with the zigzag GNR valley-isospin valve (Rycerz et al 2007 Nat. Phys. 3 172). Besides the valley-isospin, the density of states will also have an effect on the suppression of Ic.
机译:通过非平衡格林函数方法研究了超导体-石墨烯纳米带-超导体结的传输。发现在SGS结的中心曲折石墨烯纳米带(ZGNR)中的现场电势U在超电流I-c的大小中起重要作用。当有效费米能量mu(eff)(mu(eff)= mu(F)-U)从负变为正时,SGS结将突然从“关闭”状态转换为“开启”状态。并且,随着mu(eff)进一步增加,Ic将继续增加。 SGS结的这种转换行为与之字形GNR谷底异旋阀具有相同的起源(Rycerz等,2007 Nat。Phys。3 172)。除了谷峰-isospin之外,状态密度还将对Ic的抑制产生影响。

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