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物理学报  1999 

MAGNETIC SCATTERING EFFECT ON QUANTUM TRANSPORT IN THE NORMAL METAL FERROMAGNET INSULATOR-d WAVE SUPERCONDUCTOR JUNCTIONS
正常金属-铁磁绝缘层-d波超导结中的磁散射对量子输运的影响

Keywords: 超导隧道结,高压,超导物理,磁散射,量子输运

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Abstract:

Taking into account the rough interface scattering and magnetic scattering effects of the ferromagnet layer in the normal metal-ferromagnet insulator-d wave superconductor junctions,using Bogoliubov-de Gennes equations and Blonder-Tinkham-Klapwijk model,we have calculated the differential conductance.It is found that:1)both rough interface scattering and magnetic scattering can suppress the zero-bias conductance peaks(ZBCP),in which the magnetic scattering can lead to a splitting of the ZBCP but the rough interface can resist the splitting,and the ZBCP will evolve some dips due to two higher potentials of the scattering;2)the subgap resonances in the differential conductance are predicted under the condition of a ferromagnet layer located at a distance several times larger than the coherence length from the superconductor interface.

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