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Long-Time Magnetic Relaxation in Antiferromagnetic Topological Material EuCd2As2

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【作者】 王阳李聪李勇周学博吴伟于润泽赵建发殷超辉石友国靳常青雒建林赵林向涛刘国东周兴江

【Author】 Yang Wang;Cong Li;Yong Li;Xuebo Zhou;Wei Wu;Runze Yu;Jianfa Zhao;Chaohui Yin;Youguo Shi;Changqing Jin;Jianlin Luo;Lin Zhao;Tao Xiang;Guodong Liu;X.J.Zhou;Beijing National Laboratory for Condensed Matter Physics,and Institute of Physics,Chinese Academy of Sciences;University of Chinese Academy of Sciences;Songshan Lake Materials Laboratory;Beijing Academy of Quantum Information Sciences;

【通讯作者】 刘国东;周兴江;

【机构】 Beijing National Laboratory for Condensed Matter Physics,and Institute of Physics,Chinese Academy of SciencesUniversity of Chinese Academy of SciencesSongshan Lake Materials LaboratoryBeijing Academy of Quantum Information Sciences

【摘要】 Magnetic topological materials have attracted much attention due to the correlation between topology and magnetism. Recent studies suggest that EuCd2As2 is an antiferromagnetic topological material. Here by carrying out thorough magnetic, electrical and thermodynamic property measurements, we discover a long-time relaxation of the magnetic susceptibility in EuCd2As2. The(001) in-plane magnetic susceptibility at 5 K is found to continuously increase up to 10% over the time of 14 hours. The magnetic relaxation is anisotropic and strongly depends on the temperature and the applied magnetic field. These results will stimulate further theoretical and experimental studies to understand the origin of the relaxation process and its effect on the electronic structure and physical properties of the magnetic topological materials.

【Abstract】 Magnetic topological materials have attracted much attention due to the correlation between topology and magnetism. Recent studies suggest that EuCd2As2 is an antiferromagnetic topological material. Here by carrying out thorough magnetic, electrical and thermodynamic property measurements, we discover a long-time relaxation of the magnetic susceptibility in EuCd2As2. The(001) in-plane magnetic susceptibility at 5 K is found to continuously increase up to 10% over the time of 14 hours. The magnetic relaxation is anisotropic and strongly depends on the temperature and the applied magnetic field. These results will stimulate further theoretical and experimental studies to understand the origin of the relaxation process and its effect on the electronic structure and physical properties of the magnetic topological materials.

【基金】 Supported by the National Key Research and Development Program of China (Grant Nos. 2016YFA0300600 and 2018YFA0305600);the National Natural Science Foundation of China (Grant No. 11974404);the Strategic Priority Research Program (B) of the Chinese Academy of Sciences (Grant No. XDB33000000);the Youth Innovation Promotion Association of CAS (Grant No. 2017013)
  • 【文献出处】 Chinese Physics Letters ,中国物理快报(英文版) , 编辑部邮箱 ,2021年07期
  • 【分类号】O469
  • 【下载频次】21
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