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- W3020248051 abstract "• In the presence of thick barrier, novel features are found. • The tunneling spectra are strongly depended on the pairing symmetries. • The so-called Klein-like tunneling of Andreev electron-hole pairs is involved. Herein, the quantum transport in a graphene-based normal layer/insulator/ p -wave superconductor tunnel junctions is studied by an extended Blonder-Tinkham-Klapwijk theory. It is shown that at the insulating region width being finite, the conductance and shot noise spectra exhibit oscillations as a function of applied bias voltage, which is a striking novel feature and absent in thin-barrier limit. Particularly, the oscillatory behaviors between the p x -, p y -, and p x + i p y -wave pairing symmetries are significantly different, stemming from the different types of zero-energy bound states. These features could not only be experimentally used to identify the p -wave superconductivity of graphene but also pave the way to the future preparation of graphene p -wave superconducting devices." @default.
- W3020248051 created "2020-05-01" @default.
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- W3020248051 date "2020-07-01" @default.
- W3020248051 modified "2023-10-15" @default.
- W3020248051 title "Identifying the graphene p-wave superconducting symmetry by conductance and shot noise oscillations" @default.
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- W3020248051 doi "https://doi.org/10.1016/j.physleta.2020.126502" @default.
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