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Tuning coercive force by adjusting electric potential in solution processed Co/Pt(111) and the mechanism involved

机译:通过调节固溶Co / Pt(111)中的电势来调节矫顽力及其机理

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摘要

A combination of a solution process and the control of the electric potential for magnetism represents a new approach to operating spintronic devices with a highly controlled efficiency and lower power consumption with reduced production cost. As a paradigmatic example, we investigated Co/Pt(111) in the Bloch-wall regime. The depression in coercive force was detected by applying a negative electric potential in an electrolytic solution. The reversible control of coercive force by varying the electric potential within few hundred millivolts is demonstrated. By changing the electric potential in ferromagnetic layers with smaller thicknesses, the efficiency for controlling the tunable coercive force becomes higher. Assuming that the pinning domains are independent of the applied electric potential, an electric potential tuning-magnetic anisotropy energy model was derived and provided insights into our knowledge of the relation between the electric potential tuning coercive force and the thickness of the ferromagnetic layer. Based on the fact that the coercive force can be tuned by changing the electric potential using a solution process, we developed a novel concept of electric-potential-tuned magnetic recording, resulting in a stable recording media with a high degree of writing ability.
机译:解决方案过程和对磁势的控制的结合代表了一种新的操作自旋电子器件的方法,该方法可高度控制效率并降低功耗并降低生产成本。作为一个典型的例子,我们在布洛赫墙体制下研究了Co / Pt(111)。通过在电解液中施加负电位来检测矫顽力的降低。演示了通过在几百毫伏内改变电势可逆控制矫顽力。通过以较小的厚度改变铁磁层中的电势,控制可调矫顽力的效率变得更高。假设钉扎域与施加的电势无关,则推导了电势调谐磁各向异性能量模型,并为我们提供了关于电势调谐矫顽力与铁磁层厚度之间关系的知识。基于可以通过使用固溶过程改变电势来调节矫顽力这一事实,我们开发了电势调节磁记录的新概念,从而获得了具有高度写入能力的稳定记录介质。

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