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Evidence for Majorana bound states in an iron-based superconductor

机译:铁基超导体中马约拉纳邦状态的证据

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The search for Majorana bound states (MBSs) has been fueled by the prospect of using their non-Abelian statistics for robust quantum computation. Two-dimensional superconducting topological materials have been predicted to host MBSs as zero-energy modes in vortex cores. By using scanning tunneling spectroscopy on the superconducting Dirac surface state of the iron-based superconductor FeTe0.55Se0.45, we observed a sharp zero-bias peak inside a vortex core that does not split when moving away from the vortex center. The evolution of the peak under varying magnetic field, temperature, and tunneling barrier is consistent with the tunneling to a nearly pure MBS, separated from nontopological bound states. This observation offers a potential platform for realizing and manipulating MBSs at a relatively high temperature.
机译:对马约拉纳束缚态(MBSs)的搜索因其非阿贝尔统计用于稳健的量子计算的前景而备受推崇。二维超导拓扑材料已被预测为将MBS托管为涡旋核中的零能量模式。通过在铁基超导体FeTe0.55Se0.45的超导Dirac表面态上使用扫描隧穿光谱,我们观察到了涡旋核内部的零尖峰,该峰在远离涡旋中心时不会分裂。在变化的磁场,温度和隧穿势垒下,峰的演化与隧穿至与非拓扑结合态分开的接近纯MBS的行为是一致的。该观察结果为在相对较高的温度下实现和操作MBS提供了一个潜在的平台。

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