Liang Lei, Chen Qihong, Lu Jianming, Talsma Wytse, Shan Juan, Blake Graeme R, Palstra Thomas T M, Ye Jianting
Zernike Institute for Advanced Materials, University of Groningen, Nijenborgh 4, 9747 AG Groningen, Netherlands.
Sci Adv. 2018 Apr 6;4(4):eaar2030. doi: 10.1126/sciadv.aar2030. eCollection 2018 Apr.
Electrically controllable magnetism, which requires the field-effect manipulation of both charge and spin degrees of freedom, has attracted growing interest since the emergence of spintronics. We report the reversible electrical switching of ferromagnetic (FM) states in platinum (Pt) thin films by introducing paramagnetic ionic liquid (PIL) as the gating media. The paramagnetic ionic gating controls the movement of ions with magnetic moments, which induces itinerant ferromagnetism on the surface of Pt films, with large coercivity and perpendicular anisotropy mimicking the ideal two-dimensional Ising-type FM state. The electrical transport of the induced FM state shows Kondo effect at low temperature, suggesting spatially separated coexistence of Kondo scattering beneath the FM interface. The tunable FM state indicates that paramagnetic ionic gating could serve as a versatile method to induce rich transport phenomena combining field effect and magnetism at PIL-gated interfaces.
自自旋电子学出现以来,电可控磁性(需要对电荷和自旋自由度进行场效应操纵)已引起越来越多的关注。我们报告了通过引入顺磁性离子液体(PIL)作为门控介质,在铂(Pt)薄膜中实现铁磁(FM)状态的可逆电切换。顺磁性离子门控控制具有磁矩的离子的运动,这在Pt薄膜表面诱导出巡游铁磁性,具有大矫顽力和垂直各向异性,模拟了理想的二维伊辛型FM状态。诱导FM状态的电输运在低温下表现出近藤效应,表明在FM界面下方近藤散射在空间上分离共存。可调谐的FM状态表明,顺磁性离子门控可以作为一种通用方法,在PIL门控界面处诱导结合场效应和磁性的丰富输运现象。