Research progress in anisotropic magnetoresistance  被引量:5

Research progress in anisotropic magnetoresistance

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作  者:Chong-Jun Zhao Lei Ding Jia-Shun HuangFu Jing-Yan Zhang Guang-Hua Yu 

机构地区:[1]Department of Materials Physics and Chemistry, University of Science and Technology Beijing [2]School of Materials and Chemical Engineering, Hainan University

出  处:《Rare Metals》2013年第3期213-224,共12页稀有金属(英文版)

基  金:financially supported by the National Natural Science Foundation of China (Nos. 51071023 and 51101047);the Natural Science Foundation of Hainan Province (No. 512114);the Ph.D. Programs Foundation of Ministry of Education (No. 20120006130002);Program for Changjiang Scholars and Innovative Research Team in University

摘  要:Anisotropic magnetoresistance (AMR) is an important physical phenomenon that has broad application potential in many relevant fields. Thus, AMR is one of the most attractive research directions in material science to date. In this article, we summarize the recent advances in AMR, including traditional permalloy AMR, tunnel AMR, ballistic AMR, Coulomb blockade AMR, anomalous AMR, and antiferromagnetic AMR. The existing problems and possible challenges in developing more advanced AMR were briefly discussed, and future development trends and prospects were also speculated.Anisotropic magnetoresistance (AMR) is an important physical phenomenon that has broad application potential in many relevant fields. Thus, AMR is one of the most attractive research directions in material science to date. In this article, we summarize the recent advances in AMR, including traditional permalloy AMR, tunnel AMR, ballistic AMR, Coulomb blockade AMR, anomalous AMR, and antiferromagnetic AMR. The existing problems and possible challenges in developing more advanced AMR were briefly discussed, and future development trends and prospects were also speculated.

关 键 词:Anisotropic magnetoresistance Spin-orbitcoupling SPINTRONICS 

分 类 号:O482.5[理学—固体物理]

 

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