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Tunable magnetic orders in UAu1-xSb2

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【作者】 张文陈秋云谢东华刘毅谭世勇冯卫朱燮刚郝群庆张云罗丽珠赖新春

【Author】 Wen Zhang;Qiu-Yun Chen;Dong-Hua Xie;Yi Liu;Shi-Yong Tan;Wei Feng;Xie-Gang Zhu;Qun-Qing Hao;Yun Zhang;Li-Zhu Luo;Xin-Chun Lai;Science and Technology on Surface Physics and Chemistry Laboratory;

【通讯作者】 赖新春;

【机构】 Science and Technology on Surface Physics and Chemistry Laboratory

【摘要】 Two nonstoichiometric UAu1-xSb2(x = 0.25, 0.1) single crystals are successfully synthesized using a flux method,and their physical properties are comprehensively studied by measuring the dc-magnetization and electrical resistivity. Evidence for at least three magnetic phases is found in these samples. In zero field, both samples undergo an antiferromagnetic transition at a relatively high temperature, and with further cooling they pass through another antiferromagnetic phase,before reaching a ferromagnetic ground state. Furthermore, the magnetic order can be tuned by varying the site occupation of Au. Such a tunable magnetic order may provide an opportunity for exploring the potential quantum critical behavior in this system.

【Abstract】 Two nonstoichiometric UAu1-xSb2(x = 0.25, 0.1) single crystals are successfully synthesized using a flux method,and their physical properties are comprehensively studied by measuring the dc-magnetization and electrical resistivity. Evidence for at least three magnetic phases is found in these samples. In zero field, both samples undergo an antiferromagnetic transition at a relatively high temperature, and with further cooling they pass through another antiferromagnetic phase,before reaching a ferromagnetic ground state. Furthermore, the magnetic order can be tuned by varying the site occupation of Au. Such a tunable magnetic order may provide an opportunity for exploring the potential quantum critical behavior in this system.

【基金】 Project supported by the National Natural Science Foundation of China(Grant Nos.11874330,11504342,11504341,and U1630248);the National Key R&D Program of China(Grant No.2017YFA0303104);the Science Challenge Project,China(Grant No.TZ2016004)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2019年01期
  • 【分类号】O737
  • 【下载频次】10
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