A NEW METHOD TO ENHANCE THE MAGNETISM OF Fe OVERLAYER ON GaAs(100): SULFUR PASSIVATION USING CH 3 CSNH 2

Xu Pengshou, Guo Hong-zhi, Zhang Fapei, Lu Er-Dong, Xu Fa-qiang, Pan Hai-bin, Z. Xinyi
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引用次数: 1

Abstract

Ferromagnetic resonance (FMR) has been used to investigat the magnetism of Fe overlayer on S-passivated GaAs(100) pretreated by CH3CSNH2. Comparing with the magnetism of Fe overlayer on clean GaAs(100), we find that sulfur passivation can prevent As diffusion into Fe overlayer and weaken the interaction of As and Fe. It results in enhancing the magnetism of Fe overlayer on GaAs(100). We also investigate the effects of the pre-annealing of S- passivated GaAs(100) substrate on the magnetism of Fe overlayers. The results show that the maximum effective magnetization can be obtained at annealing temperature of 400 °C. According to the experimental results of synchrotron radiation photoemission, it can be explained by the change of chemical composition and surface structure of the passivation layer on GaAs(100) surface after the annealing.
摘要一种增强GaAs(100)上铁镀层磁性的新方法:用ch3csnh2进行硫钝化
用铁磁共振(FMR)研究了CH3CSNH2预处理的s钝化GaAs(100)表面Fe覆盖层的磁性。通过对洁净GaAs(100)上Fe包层磁性的比较,发现硫钝化可以阻止As向包层扩散,减弱As与Fe的相互作用。结果表明,砷化镓(100)表面铁覆盖层的磁性增强。我们还研究了S钝化GaAs(100)衬底的预退火对铁覆盖层磁性的影响。结果表明,在400℃的退火温度下,合金的有效磁化强度达到最大值。根据同步辐射光电发射的实验结果,可以用退火后GaAs(100)表面钝化层的化学成分和表面结构的变化来解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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