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首页> 外文期刊>Physical Review, B. Condensed Matter >Quasiparticle excitations and ballistic transport in the mixed state of mesoscopic superconductors - art. no. 224514
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Quasiparticle excitations and ballistic transport in the mixed state of mesoscopic superconductors - art. no. 224514

机译:介观超导体混合状态下的准粒子激发和弹道运输-艺术。没有。 224514

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摘要

As the size of the superconducting sample with a few fluxoids is less than the dephasing length new physics comes into play. The quasiparticle excitations in vortices form coherent quantum-mechanical states providing thus a possibility to control the phase-coherent transport through the sample by changing the number of fluxoids and their configuration. Thus, mesoscopic samples with a few vortices realize a new type of magnetically tunable Andreev waveguides. The sample conductance measured in the direction of the applied magnetic field is determined by the transparency of different multivortex configurations (giant multiquanta vortices and vortex molecules) which form a set of quantum channels. The transmission coefficient for each channel is controlled by multiple Andreev reflections within the vortex cores and at the sample edge. These interference processes result in a stepwise and/or oscillating behavior of the conductance as a function of the applied magnetic field. This is a vortex-based switch with the magnetic field playing the role of the gate voltage. [References: 37]
机译:由于具有几个磁通量的超导样品的尺寸小于移相长度,因此新的物理学开始发挥作用。涡旋中的准粒子激发形成相干的量子力学状态,从而提供了一种可能,通过改变磁通量的数量及其构型来控制通过样品的相干传输。因此,具有少量涡旋的介观样品实现了新型的可磁调谐的Andreev波导。沿施加磁场方向测量的样品电导由形成一组量子通道的不同多涡旋结构(巨大的多量子涡旋和涡旋分子)的透明度决定。每个通道的传输系数由涡流核心和样本边缘的多次Andreev反射控制。这些干扰过程导致电导的阶跃和/或振荡行为,取决于所施加的磁场。这是基于涡流的开关,磁场起着栅极电压的作用。 [参考:37]

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