论文标题
新的高度动脉核RH基于磁性记录
New highly-anisotropic Rh-based Heusler compound for magnetic recording
论文作者
论文摘要
高密度磁记录介质的发展受到非常小的铁磁晶体中的超帕磁性的限制。具有较强垂直环形的硬磁性材料可提供稳定性和高记录密度。为了克服用较高的训练编写媒体的难度,已经开发了热辅助磁记录(HAMR),在写作之前将培养基迅速加热到Curie温度TC,然后快速冷却。需求是合适的TC,再加上各向异性导热性和硬磁性能。在这里,我们将RH2COSB作为一种新的硬磁铁,具有薄膜磁性记录的潜力。在2 K时(2.2 MJM-3和室温下的0.44 t)将3.6 MJM-3的磁晶各向异性与饱和磁化结合在一起。在室温下,3.7的磁硬度参数是任何稀土自由硬磁铁的最高观察到的。各向异性与CO上的0.42μb的无淬灭轨道矩有关,该轨道与邻近的RH原子杂交具有较大的自旋轨道相互作用。此外,从450 K的TC开始,各向异性的明显温度依赖性,加上20 WM-1K-1的高热电导率,使RH2COSB成为候选热辅助写作的候选者,其记录密度超过10 tb/in2。
The development of high-density magnetic recording media is limited by the superparamagnetism in very small ferromagnetic crystals. Hard magnetic materials with strong perpendicular anisotropy offer stability and high recording density. To overcome the difficulty of writing media with a large coercivity, heat assisted magnetic recording (HAMR) has been developed, rapidly heating the media to the Curie temperature Tc before writing, followed by rapid cooling. Requirements are a suitable Tc, coupled with anisotropic thermal conductivity and hard magnetic properties. Here we introduce Rh2CoSb as a new hard magnet with potential for thin film magnetic recording. A magnetocrystalline anisotropy of 3.6 MJm-3 is combined with a saturation magnetization of μ0Ms = 0.52 T at 2 K (2.2 MJm-3 and 0.44 T at room-temperature). The magnetic hardness parameter of 3.7 at room temperature is the highest observed for any rare-earth free hard magnet. The anisotropy is related to an unquenched orbital moment of 0.42 μB on Co, which is hybridized with neighbouring Rh atoms with a large spin-orbit interaction. Moreover, the pronounced temperature-dependence of the anisotropy that follows from its Tc of 450 K, together with a high thermal conductivity of 20 Wm-1K-1, makes Rh2CoSb a candidate for development for heat assisted writing with a recording density in excess of 10 Tb/in2.