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Effect of Substrate Temperature on the Structure and Magnetic Properties of CoPt/AlN Multilayer Films
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作者 安红雨 Takashi HARUMOTO +5 位作者 Takumi SANNOMIYA Shinji MURAISHI TU Rong ZHANG Lianmeng Yoshio NAKAMURA Ji SHI 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2016年第1期44-47,共4页
The effect of substrate temperature on the structure and magnetic properties of CoPt/AlN multilayer films has been investigated.The crystallinity of CoPt has been improved with increasing substrate temperature from ro... The effect of substrate temperature on the structure and magnetic properties of CoPt/AlN multilayer films has been investigated.The crystallinity of CoPt has been improved with increasing substrate temperature from room temperature to 400 ℃.After post-annealing process,L1_0 CoPt structure transformation has also been promoted.However,since the easy magnetic axis of L1_0 CoPt is in[001]orientation,the promotion of L1_0 CoPt transformation causes the change of easy magnetic axis in(111) textured CoPt layers,which impairs the perpendicular magnetic anisotropy.The optimum substrate temperature should be room temperature to obtain the strongest perpendicular magnetic anisotropy according to the results of the present work. 展开更多
关键词 CoPt/AlN post-annealing crystallinity magnetic anisotropy
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Recent observations of negative longitudinal magnetoresistance in semimetal
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作者 许锡童 贾爽 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第11期34-40,共7页
The discovery of Dirac semimetal and Weyl semimetal has motivated a growing passion for investigating the unique magneto-transport properties in the topological materials.A Weyl semimetal can host Weyl fermions as its... The discovery of Dirac semimetal and Weyl semimetal has motivated a growing passion for investigating the unique magneto-transport properties in the topological materials.A Weyl semimetal can host Weyl fermions as its low-energy quasi-particle excitations,and therefore perform exotic features analogous to those in high-energy physics,such as the violation of the chiral charge conservation known as the chiral anomaly.One of the electrical transport signatures of the chiral anomaly is the Adler-Bell-Jackiw(ABJ) anomaly which presents as a negative magnetoresistance when the magnetic field and the current are parallel.Very recently,numerous experiments reported negative longitudinal magnetoresistance(NLMR) in topological materials,but the details of the measurement results are various.Here the materials and the corresponding experiment results are briefly reviewed.Besides the plausible explanation of the ABJ anomaly,some other origins of the NLMR are also discussed. 展开更多
关键词 topological longitudinal chiral magneto anomaly explanation details analogous anisotropy crystalline
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