论文标题

薄绝缘层上磁性高素质的超精细相互作用的趋势

Trends in the hyperfine interactions of magnetic adatoms on thin insulating layers

论文作者

Shehada, Sufyan, Dias, Manuel dos Santos, Guimarães, Filipe Souza Mendes, Abusaa, Muayad, Lounis, Samir

论文摘要

核自旋是用于量子信息技术的潜在候选者之一。最近的突破使原子能解析了它们与电子自旋的相互作用,即使用扫描隧道显微镜(STM)的单个原子中所谓的超精细相互作用。有趣的是,这仅是针对将两层厚的Mgo放在少数物种上才实现的。在这里,我们从第一原理中系统地量化了沉积在MGO,NAF,NAF,NACL,H-BN和CU $ _2 $ n电影的各种厚度上的整个3D过渡Adatoms的超细相互作用。我们确定具有最大的超细相互作用的Adatom-Substrate复合物,并揭示主要趋势和异常。我们揭示了发挥作用的核心机制,例如局部粘结几何形状的相互作用和薄膜的化学性质,这会触发高旋转状态和低旋转状态之间的过渡,并伴有磁性电子的微妙内部重排。通过提供超精细相互作用的一般图,我们的工作对未来的STM调查具有直接的影响,旨在检测和实现量子概念依赖于核自旋。

Nuclear spins are among the potential candidates prospected for quantum information technology. A recent breakthrough enabled to atomically resolve their interaction with the electron spin, the so-called hyperfine interaction, within individual atoms utilizing scanning tunneling microscopy (STM). Intriguingly, this was only realized for a few species put on a two-layers thick MgO. Here, we systematically quantify from first-principles the hyperfine interactions of the whole series of 3d transition adatoms deposited on various thicknesses of MgO, NaF, NaCl, h--BN and Cu$_2$N films. We identify the adatom-substrate complexes with the largest hyperfine interactions and unveil the main trends and exceptions. We reveal the core mechanisms at play, such as the interplay of the local bonding geometry and the chemical nature of the thin films, which trigger transitions between high- and low-spin states accompanied with subtle internal rearrangements of the magnetic electrons. By providing a general map of hyperfine interactions, our work has immediate implications in future STM investigations aiming at detecting and realizing quantum concepts hinging on nuclear spins.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源