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首页> 外文期刊>Physical review, B >Conductance signatures of odd-frequency superconductivity in quantum spin Hall systems using a quantum point contact
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Conductance signatures of odd-frequency superconductivity in quantum spin Hall systems using a quantum point contact

机译:使用量子点接触的量子旋转霍尔系统中奇频超导测量签名

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Topological superconductors give rise to unconventional superconductivity, which is mainly characterized by the symmetry of the superconducting pairing amplitude. However, since the symmetry of the superconducting pairing amplitude is not directly observable, its experimental identification is rather difficult. In our work, we propose a system, composed of a quantum point contact and proximity-induced s-wave superconductivity at the helical edge of a two-dimensional topological insulator, for which we demonstrate the presence of odd-frequency pairing and its intimate connection to unambiguous transport signatures. Notably, our proposal requires no time-reversal symmetry breaking terms. We discover the domination of crossed Andreev reflection over electron cotunneling in a wide range of parameter space, which is a quite unusual transport regime.
机译:拓扑超导体引起非常规的超导性,其主要是具有超导配对幅度的对称性的特征。 然而,由于超导配对幅度的对称性不是直接观察到的,因此其实验识别相当困难。 在我们的工作中,我们提出了一种系统,该系统由二维拓扑绝缘体的螺旋边缘处的量子点接触和接近的S波超导,我们证明了奇数频率配对的存在及其亲密连接 到明确的运输签名。 值得注意的是,我们的提案不需要时间逆转对称性突破条款。 在广泛的参数空间中,我们发现跨越Andreev反射的互化和rereev反射在宽范围的参数空间中,这是一个相当不寻常的运输制度。

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