Max-Planck Institut für Mikrostrukturphysik, Halle, Germany.
J Phys Condens Matter. 2014 Mar 5;26(9):093001. doi: 10.1088/0953-8984/26/9/093001. Epub 2014 Feb 12.
We review the state of the art of surface magnetic property control with non-magnetic means, concentrating on metallic surfaces and techniques such as charge-doping or external electric field (EEF) application. Magneto-electric coupling via EEF-based charge manipulation is discussed as a way to tailor single adatom spins, exchange interaction between adsorbates or anisotropies of layered systems. The mechanisms of paramagnetic and spin-dependent electric field screening and the effect thereof on surface magnetism are discussed in the framework of theoretical and experimental studies. The possibility to enhance the effect of EEF by immersing the target system into an electrolyte or ionic liquid is discussed by the example of substitutional impurities and metallic alloy multilayers. A similar physics is pointed out for the case of charge traps, metallic systems decoupled from a bulk electron bath. In that case the charging provides the charge carrier density changes necessary to affect the magnetic moments and anisotropies in the system. Finally, the option of using quasi-free electrons rather than localized atomic spins for surface magnetism control is discussed with the example of Shockley-type metallic surface states confined to magnetic nanoislands.
我们回顾了非磁性手段控制表面磁性的最新进展,重点关注金属表面以及电荷掺杂或外部电场(EEF)应用等技术。通过基于 EEF 的电荷操纵的磁电耦合被讨论为一种调整单个吸附原子自旋、吸附物之间的交换相互作用或层状系统各向异性的方法。在理论和实验研究的框架内讨论了顺磁和自旋相关的电场屏蔽机制及其对表面磁性的影响。通过取代杂质和金属合金多层的例子讨论了通过将目标系统浸入电解质或离子液体中增强 EEF 效应的可能性。对于与体电子浴解耦的电荷陷阱金属系统的情况,指出了类似的物理现象。在这种情况下,充电提供了改变系统中磁矩和各向异性所需的载流子密度变化。最后,以限制在磁性纳米岛上的 Shockley 型金属表面态为例,讨论了使用准自由电子而不是局域原子自旋来控制表面磁性的选择。