首页> 外文期刊>The European physical journal, B. Condensed matter physics >Characteristics of transmission of electrons in a quantum wire tangentially attached to a superconductor ring threaded by magnetic flux
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Characteristics of transmission of electrons in a quantum wire tangentially attached to a superconductor ring threaded by magnetic flux

机译:量子线中电子的传输特性与载有磁通量的超导体环相切

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We present numerical investigations of the transmission properties of electrons in a normal quantum wire tangentially attached to a superconductor ring threaded by magnetic flux. A point scatterer with a δ-function potential is placed at node to model scattering effect. We find that the transmission characteristics of electrons in this structure strongly depend on the normal or superconducting state of the ring. The transmission probability as a function of the energy of incident electrons, in the case of a superconductor ring threaded by one quantum magnetic flux, emerges one deep dip, imposed upon the first broad bump in spectrum. This intrinsic conductance dip originates from the superconductor state of the ring. When increasing the magnetic flux from one quantum magnetic flux to two, the spectrum shifts toward higher energy region in the whole. This conductance dip accordingly shifts and appears in the second bump. In the presence of a point-scatterer at the node, the spectrum is substantially modified. Based on the condition of the formation of the standing wave functions in the ring and the broken of the time-reserve symmetry of Schrodinger equation after switching magnetic flux, the characteristics of transmission of electrons in this structure can be well understood.
机译:我们目前对正切线连接到由磁通量穿过的超导体环上的正常量子线中电子的传输特性进行数值研究。将具有δ函数电位的点散射体放置在节点上,以模拟散射效果。我们发现,这种结构中电子的传输特性在很大程度上取决于环的正常或超导状态。在超导环被一个量子磁通量穿过的情况下,作为入射电子能量的函数的传输概率出现了一个深陷,强加在光谱的第一个宽泛凸点上。这种固有的电导率下降源自环的超导体状态。当将磁通量从一个量子磁通量增加到两个时,频谱整体上会移向更高的能量区域。因此,该电导下降将发生偏移并出现在第二个凸起中。在节点处存在点散射器的情况下,频谱将被大幅修改。根据环中形成驻波函数的条件以及切换磁通量后薛定inger方程的时间保留对称性的破坏,可以很好地理解这种结构中电子的传输特性。

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