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Amplification of Cooper pair splitting current in a graphene-based Cooper pair beam splitter geometry

机译:基于石墨烯的库珀对分束器几何中库珀对分裂电流的放大

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摘要

Motivated by the recent experiments [Scientific Reports 6,23051 (2016); Phys. Rev. Lett. 114,096602 (2015)], we theoretically investigate Cooper pair splitting current in a graphene-based Cooper pair beam splitter geometry. By considering the graphene-based superconductor as an entangler device, instead of normal [two-dimensional (2D)] BCS superconductor, we show that the Cooper pair splitting current mediated by the crossed Andreev process is amplified compared to its normal superconductor counterpart. This amplification is attributed to the strong suppression of the local normal Andreev reflection process (arising from the Cooper pair splitting) from the graphene-based superconductor to lead via the same quantum dot, in comparison to the usual 2D superconductor. Due to the vanishing density of states at the Dirac point of undoped graphene, a doped graphene-based superconductor is considered here and it is observed that Cooper pair splitting current is very insensitive to the doping level in comparison to the usual 2D superconductor. The transport process of nonlocal spin-entangled electrons also depends on the type of pairing, i.e., whether the electron-hole pairing is onsite, intersublattice or the combination of both. The intersublattice pairing of graphene causes the maximum nonlocal Cooper pair splitting current, whereas the presence of both pairings reduces the Cooper pair splitting current.
机译:受最近实验的启发[Scientific Reports 6,23051(2016);物理牧师114,096602(2015)],我们从理论上研究了基于石墨烯的Cooper对分束器几何结构中的Cooper对分裂电流。通过将基于石墨烯的超导体视为纠缠器件,而不是普通的[二维(2D)] BCS超导体,我们证明了由交叉安德列夫过程介导的库珀对分裂电流与其正常的超导体相比被放大了。与通常的2D超导体相比,这种放大归因于从石墨烯基超导体对局部正常Andreev反射过程(来自库珀对分裂的强烈抑制)从基于石墨烯的超导体到相同量子点的传导。由于未掺杂石墨烯的狄拉克点处的状态消失,这里考虑了一种基于掺杂石墨烯的超导体,并且观察到与常规的二维超导体相比,库珀对分裂电流对掺杂水平非常不敏感。非局域自旋纠缠电子的传输过程还取决于配对的类型,即电子-空穴配对是现场的,亚晶格间的还是两者的组合。石墨烯的亚晶格间配对引起最大的非局部库珀对分裂电流,而两个对的存在都降低了库珀对分裂电流。

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  • 来源
    《Physical review. B, Condensed Matter And Materials Physics》 |2017年第12期|125406.1-125406.8|共8页
  • 作者

    SK Firoz Islam; Arijit Saha;

  • 作者单位

    Institute of Physics, Sachivalaya Marg, Bhubaneswar-751005, India,Homi Bhabha National Institute, Training School Complex, Anushakti Nagar, Mumbai 400085, India;

    Institute of Physics, Sachivalaya Marg, Bhubaneswar-751005, India,Homi Bhabha National Institute, Training School Complex, Anushakti Nagar, Mumbai 400085, India;

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