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作 者:魏健文[1]
出 处:《低温物理学报》2006年第2期121-125,共5页Low Temperature Physical Letters
基 金:江苏省教育厅自然科学基金(批准号04KJD140036)资助的课题.~~
摘 要:在正常金属铁磁绝缘层dx2-y2+idxy混合波超导隧道结中,考虑到铁磁绝缘层的磁散射和界面的粗糙散射效应,运用BogoliubovdeGennes(BdG)方程和BlonderTinkhamKlapwijk(BTK)理论,计算了隧道结中的准粒子传输系数和微分电导.研究表明:(1)磁散射和界面粗糙散射均可以压低电导峰,其中磁散射能使电导峰滑移,而粗糙界面散射却能阻止这种滑移,且两散射的共同作用可抑制由混合波两序参数的幅值比不同所导致的电导峰滑移;(2)随铁磁层离超导表面距离的增加,隧道谱在零偏压处由凹陷变成了零偏压电导峰,继而又演化为凹陷中的中心峰;(3)当铁磁层离开超导表面有若干相干长度时,隧道谱中将呈现一些子能级谐振峰.Taking into account the magnetic scattering and rough interface scattering effects of the ferromagnet layer in the normal metal-ferromagnet insulator-dx^2-y^2+idxy mixed wave superconductor tunnel junctions, using Bogoliubov-de Gennes (BdG) eguation and Blonder-Tinkham-klapwjrk (BTK) theory, We calculate the quasiparticle transport coefficients and the differential conductance. It is found that: (1)both magnetic scattering and rough interface scattering can abate the conductance peaks, in which the magnetic scattering can lead to a splitting of the peaks but the rough interface scattering can resist the splitting, and the joint effect of two scattering may suppress the splitting of the conductance peaks that are caused by the different magnitude ratio of two order parameter of mixed wave; (2)with increasing of the distance of the ferromagnet layer away from the superconductor interface, the tunneling spectra at zero-bias are changed from the dips to the peaks, then evolve the central peaks in the dips; (3)the energy level resonant peaks in the tunneling spectra are predicted if the ferromagnet layer is located several superconductor coherence lengths away from the superconductor interface.
关 键 词:dx^2-y^2+idxy混合波超导体 磁散射 粗糙界面散射 微分电导
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