论文标题
TM3FE5O12/pt中的镁介导的自旋电流,垂直磁各向异性
Magnon-mediated spin currents in Tm3Fe5O12/Pt with perpendicular magnetic anisotropy
论文作者
论文摘要
磁绝缘子(MI)石榴石膜中具有可靠的垂直磁各向异性(PMA)携带的纯自旋电流的控制对旋转技术非常感兴趣,因为它们可用于携带,运输和处理信息。带有PMA的石榴石膜呈现迷宫域磁性结构,可丰富磁化动力学,可用于基于波浪的逻辑和内存计算设备。在MI/NM BiLayers中,NM是正常的金属,可提供强旋轨耦合,PMA通过降低所需的电流并更快地渲染过程,对发展磁性随机记忆(SOT-MRAM)来使旋转轨道扭矩(SOT)驱动的磁化的切换受益。在这项工作中,我们通过铁磁共振测量值调查了用PMA的Thulium Iron Garnet(TIG)中的磁各向异性,然后在微波和热电孔中驱动的TIG/PT中的镁介导的纯纯自旋电流的激发和检测。 TIG膜呈现出吉尔伯特阻尼常数α〜0.01,共振场高于3.5 KOE高于30 OE,在300 k和9.5 GHz的宽度高于60 OE。观察到通过TIG/PT的旋转电流转换为在PT膜边缘产生的微电压。获得的自旋塞贝克系数为0.54μV/k,还确认了高界面自旋透明度。
The control of pure spin currents carried by magnons in magnetic insulator (MI) garnet films with a robust perpendicular magnetic anisotropy (PMA) is of great interest to spintronic technology as they can be used to carry, transport and process information. Garnet films with PMA present labyrinth domain magnetic structures that enrich the magnetization dynamics, and could be employed in more efficient wave-based logic and memory computing devices. In MI/NM bilayers, where NM being a normal metal providing a strong spin-orbit coupling, the PMA benefits the spin-orbit torque (SOT) driven magnetization's switching by lowering the needed current and rendering the process faster, crucial for developing magnetic random-access memories (SOT-MRAM). In this work, we investigated the magnetic anisotropies in thulium iron garnet (TIG) films with PMA via ferromagnetic resonance measurements, followed by the excitation and detection of magnon-mediated pure spin currents in TIG/Pt driven by microwaves and heat currents. TIG films presented a Gilbert damping constant α~0.01, with resonance fields above 3.5 kOe and half linewidths broader than 60 Oe, at 300 K and 9.5 GHz. The spin-to-charge current conversion through TIG/Pt was observed as a micro-voltage generated at the edges of the Pt film. The obtained spin Seebeck coefficient was 0.54 μV/K, confirming also the high interfacial spin transparency.