溶液旋涂法制备 BixY3–xFe5O12 薄膜的自旋输运特性

Translated title of the contribution: Spin transport properties of BixY3–xFe5O12 thin films prepared by spin coating

Ying Yi Tian, Shuan Hu Wang, Dian Bing Luo, Xiang Yang Wei, Ke Xin Jin

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

Yttrium iron garnet (YIG), as a room temperature ferrimagnetic insulator with low damping and narrow ferromagnetic resonance linewidth, has been the research hotspot in spintronics because of its spin transport properties. Bi is one of the most common doping elements used in YIG, and some researches have proved that it can tune the magnetic properties of YIG. Previous studies of BixY3–xFe5O12 thin films focused on the evolutions of their structures, morphologies, and magnetic characteristics. Yet, the effects of Bi3+ substitution of Y3+ on spin transport in YIG thin films have not been systematically studied. The regulation of YIG spin transport by doping is expected to provide a new idea for the spintronics exploration of Pt/YIG system. In this work, we prepare a series of BixY3 – xFe5O12 films with different doping ratios by spin coating. And we investigate the effects of Bi3+ on morphology, structure and spin transport properties of YIG films. The results show that Bi doping does not change the crystal structure of YIG. The absorption of the film increases and the bandgap decreases with the increase of doping ratio. The X-ray photoelectron spectroscopy (XPS) indicates the coexistence of Bi3+ and Bi2+. The regulation of Bi doping on spin transport is reflected in the fact that the magnon diffusion length of BixY3–xFe5O12 films is significantly smaller than that of pure YIG films. Meanwhile, we find that the obvious spin Hall magnetoresistance can still be detected in the Pt/BixY3 – xFe5O12 hetero-structure, and the amplitude is the largest when x = 0.3.

Translated title of the contributionSpin transport properties of BixY3–xFe5O12 thin films prepared by spin coating
Original languageChinese (Traditional)
Article number017201
JournalWuli Xuebao/Acta Physica Sinica
Volume72
Issue number1
DOIs
StatePublished - 5 Jan 2023

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