Obinata Aya, Hibino Yuki, Hayakawa Daichi, Koyama Tomohiro, Miwa Kazumoto, Ono Shimpei, Chiba Daichi
Department of Applied Physics, Faculty of Engineering, The University of Tokyo, Bunkyo, Tokyo 113-8656, Japan.
Central Research Institute of Electric Power Industry, Komae, Tokyo 201-8511, Japan.
Sci Rep. 2015 Sep 22;5:14303. doi: 10.1038/srep14303.
Several magnetic properties have recently become tunable with an applied electric field. Particularly, electrically controlled magnetic phase transitions and/or magnetic moments have attracted attention because they are the most fundamental parameters in ferromagnetic materials. In this study, we showed that an electric field can be used to control the magnetic moment in films made of Pd, usually a non-magnetic element. Pd ultra-thin films were deposited on ferromagnetic Pt/Co layers. In the Pd layer, a ferromagnetically ordered magnetic moment was induced by the ferromagnetic proximity effect. By applying an electric field to the ferromagnetic surface of this Pd layer, a clear change was observed in the magnetic moment, which was measured directly using a superconducting quantum interference device magnetometer. The results indicate that magnetic moments extrinsically induced in non-magnetic elements by the proximity effect, as well as an intrinsically induced magnetic moments in ferromagnetic elements, as reported previously, are electrically tunable. The results of this study suggest a new avenue for answering the fundamental question of "can an electric field make naturally non-magnetic materials ferromagnetic?".
最近,几种磁特性已可通过施加电场进行调控。特别地,电控磁相变和/或磁矩引起了人们的关注,因为它们是铁磁材料中最基本的参数。在本研究中,我们表明电场可用于控制通常为非磁性元素的钯制成的薄膜中的磁矩。钯超薄膜沉积在铁磁铂/钴层上。在钯层中,通过铁磁近邻效应诱导出铁磁有序磁矩。通过对该钯层的铁磁表面施加电场,使用超导量子干涉装置磁力计直接测量发现磁矩发生了明显变化。结果表明,如先前报道的那样,由近邻效应在非磁性元素中外部诱导的磁矩以及在铁磁元素中固有诱导的磁矩都是电可调的。本研究结果为回答“电场能否使天然非磁性材料具有铁磁性?”这一基本问题开辟了一条新途径。