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Sign reversal of anisotropic magnetoresistance and anomalous thickness-dependent resistivity in Sr_(2)CrWO_(6)/SrTiO_(3) films

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摘要 High-quality Sr_(2)CrWO_(6)(SCWO) films have been grown on SrTiO_(3)(STO) substrate by pulsed laser deposition under low oxygen pressure. With decrease of the film thickness, a drastic conductivity increase is observed. The Hall measurements show that the thicker the film, the lower the carrier density. An extrinsic mechanism of charge doping due to the dominance of oxygen vacancies at SCWO/STO interfaces is proposed. The distribution and gradient of carrier concentration in SCWO films are considered to be related to this phenomenon. Resistivity behavior observed in these films is found to follow the variable range hopping model. It is revealed that with increase of the film thickness, the extent of disorder in the lattice increases, which gives a clear evidence of disorder-induced localization charge carriers in these films.Magnetoresistance measurements show that there is a negative magnetoresistance in SCWO films, which is considered to be caused by the magnetic scattering of magnetic elements Cr^(3+) and W^(5+). In addition, a sign reversal of anisotropic magnetoresistance(AMR) in SCWO film is observed for the first time, when the temperature varies across a characteristic value, T_(M). Magnetization-temperature measurements demonstrate that this AMR sign reversal is caused by the direction transition of easy axis of magnetization from the in-plane ferromagnetic order at T > T_(M) to the out-of-plane at T < T_(M).
作者 姚春丽 邵婷娜 刘明睿 张子涛 姜伟民 赵强 乔宇杰 陈美慧 陈星宇 窦瑞芬 熊昌民 聂家财 Chunli Yao;Tingna Shao;Mingrui Liu;Zitao Zhang;Weimin Jiang;Qiang Zhao;Yujie Qiao;Meihui Chen;Xingyu Chen;Ruifen Dou;Changmin Xiong;Jiacai Nie(Department of Physics,Beijing Normal University,Beijing 100875,China;State Key Laboratory of Luminescence and Applications,Changchun Institute of Optics,Fine Mechanics and Physics,Chinese Academy of Sciences,Changchun 130033,China)
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第10期146-152,共7页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China (Grant Nos. 92065110, 11974048, and 12074334)。
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