IrMn/[Co/Pt]3 多层中的室温自发垂直交换偏压

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-09-10 DOI:10.1088/1367-2630/ad7636
Jiabin Wang, Xilai Bao, Jinxia Chen, Mengting Zou, Yali Xie, Run-Wei Li, Xiaoguang Li, Yanwei Cao and Baomin Wang
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引用次数: 0

摘要

垂直交换偏压(PEB)是开发先进纳米级自旋电子器件的理想选择。传统 PEB 的实现通常需要通过反铁磁材料的奈尔温度进行场冷却。在这项研究中,我们利用 IrMn 在室温(RT)下的等温结晶,证明了在 IrMn/[Co/Pt]3 多层中实现了自发 PEB(SPEB)。在 IrMn/Co 界面等温生成的 SPEB 不会破坏多层膜的垂直磁各向异性。克尔显微镜在不同磁化时间后捕捉到的多层膜磁畴也表明了 SPEB 的产生。通过改变等温磁化时间和 IrMn 的退火温度,可以控制 SPEB 的大小。磁化等待时间与 SPEB 之间的关系表明,即使是轻微的等温结晶也能产生大量的 SPEB。我们的研究结果为在等温条件下在 IrMn/[Co/Pt]3多层膜中生成 PEB 提供了另一种方法。
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Room-temperature spontaneous perpendicular exchange bias in IrMn/[Co/Pt]3 multilayers
Perpendicular exchange bias (PEB) is highly desirable for the development of advanced nanoscale spintronics devices. The attainment of conventional PEB typically involves a field-cooling process through the Néel temperature of antiferromagnetic materials. In this study, we demonstrated the realization of spontaneous PEB (SPEB) in IrMn/[Co/Pt]3 multilayers utilizing isothermal crystallization of IrMn at room temperature (RT). And the SPEB generated isothermally at IrMn/Co interface does not destroy the perpendicular magnetic anisotropy of the multilayers. The magnetic domains of the multilayers captured by Kerr microscopy after different magnetization time also indicate the generation of SPEB. The magnitude of SPEB can be controllable by varying the isothermal magnetization time and the annealing temperature of IrMn. The relationship between magnetization waiting time and SPEB reveals that even slight isothermal crystallization can generate substantial SPEB. Our results provide an alternative approach to isothermally generate PEB in IrMn/[Co/Pt]3 multilayers at RT.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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