论文标题
超导灯笼中磁性结合状态的远程聚焦
Long-range focusing of magnetic bound states in superconducting lanthanum
论文作者
论文摘要
与准粒子之间具有远距离相互作用的量子机械系统为连贯的量子信息技术提供了有希望的平台。超导体是基于固态的量子设备的自然选择,而超导体内部的磁杂质会引起破碎的库珀对的准粒子激发,从而提供有关宿主超导体的特征信息。在这里,我们揭示了嵌入在超导LA(0001)表面下方的磁杂质通过延伸至非常大的距离,多达几十纳米的准颗粒相互作用。使用低温扫描探针技术,我们观察到状态的局部密度中相应的各向异性和巨型振荡。理论计算表明,准二维表面状态具有强烈的各向异性费米表面对磁性结合状态的聚焦和远距离扩展至关重要。准颗粒聚焦机制应促进在大距离内具有可调和定向的磁相互作用的多功能磁性结构的设计,从而铺平了朝着设计基于量化计算方案的拓扑量量子状态的低维磁铁 - 透明体混合系统的设计,以基于Quastumana Qaasipipartiestiestiestiestiests Quantum compution empution empocient embotogogial量子。
Quantum mechanical systems with long-range interactions between quasiparticles provide a promising platform for coherent quantum information technology. Superconductors are a natural choice for solid-state based quantum devices, while magnetic impurities inside superconductors give rise to quasiparticle excitations of broken Cooper pairs that provide characteristic information about the host superconductor. Here, we reveal that magnetic impurities embedded below a superconducting La(0001) surface interact via quasiparticles extending to very large distances, up to several tens of nanometers. Using low-temperature scanning probe techniques, we observe the corresponding anisotropic and giant oscillations in the local density of states. Theoretical calculations indicate that the quasi-two-dimensional surface states with their strongly anisotropic Fermi surface play a crucial role for the focusing and long-range extension of the magnetic bound states. The quasiparticle focusing mechanism should facilitate the design of versatile magnetic structures with tunable and directed magnetic interactions over large distances, thereby paving the way toward the design of low-dimensional magnet-superconductor hybrid systems exhibiting topologically non-trivial quantum states as possible elements of quantum computation schemes based on Majorana quasiparticles.