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首页> 外文期刊>Journal of the Physical Society of Japan >Transport Properties through Atomic-Size Point Contacts of Multi-Band Metals
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Transport Properties through Atomic-Size Point Contacts of Multi-Band Metals

机译:通过多带金属的原子尺寸点接触传输特性

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摘要

The conductance through an atomic-size point contact is examined using tight-binding models. In a case of single s band, we observe the conductance quantization in units of 2e~2/h when the atomic structure changes gradually from leads to the point contact. In the presence of broad s and narrow s bands, the conductance still seems quantized. In the presence of s and p bands, however, the conductance is substantially suppressed by the interband scattering. This is because the hybridization between s and p orbitals in the electronic states around the point contact differs from that in the bulk Bloch states, which disturbs the adiabatic conduction through the point contact. Based on the calculated results, we discuss a possible mechanism for the quantized conductance in units of e~2/h which has been observed experimentally with Ni break-junctions.
机译:使用紧密绑定模型检查通过原子大小的点接触的电导。在单s波段的情况下,当原子结构从引线到点接触逐渐变化时,我们观察到以2e〜2 / h为单位的电导量化。在宽频带和窄频带的存在下,电导似乎仍然被量化。但是,在存在s和p波段的情况下,带间散射会大大抑制电导。这是因为在点接触周围的电子状态下,s和p轨道之间的杂化与体布洛赫状态不同,这会干扰通过点接触的绝热传导。根据计算结果,我们讨论了用Ni断裂结实验观察到的以e〜2 / h为单位的量化电导的可能机理。

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