超导电性
电阻率和电导率
凝聚态物理
价(化学)
磁化
材料科学
异常(物理)
兴奋剂
物理
磁场
量子力学
作者
Hui‐Fei Zhai,Bo Lin,Pan Zhang,Hao Jiang,Yuke Li,Guang‐Han Cao
标识
DOI:10.1088/0256-307x/38/4/047402
摘要
Superconductivity below 0.3 K and a charge-density-wave-like (CDW-like) anomaly at 280 K were observed in EuBiS 2 F recently. Here we report a systematic study of structural and transport properties in Eu 0.5 Ln 0.5 BiS 2 F ( Ln = La, Ce, Pr, Nd, Sm) by electrical resistivity, magnetization, and specific heat measurements. The lattice constants have a significant change upon rare earth substitution for Eu, suggesting an effective doping. As Ln is changed from Sm to La, the superconducting transition temperature T c increases from 1.55 K to 2.8 K. In contrast to the metallic parent compound, the temperature dependence of electrical resistivity displays semiconducting-like behavior for all the Eu 0.5 Ln 0.5 BiS 2 F samples. Meanwhile, the CDW-like anomaly observed in EuBiS 2 F is completely suppressed. Unlike the mixed valence state in the undoped compound, Eu ions in these rare-earth-doped samples are mainly divalent. A specific anomaly at 1.3 K resembling that in EuBiS 2 F suggests the coexistence of superconductivity and spin glass state for Eu 0.5 La 0.5 BiS 2 F. Coexistence of ferromagnetic order and superconductivity is found below 2.2 K in Eu 0.5 Ce 0.5 BiS 2 F samples. Our results supplies a rich diagram showing that many interesting properties can be induced in BiS 2 -based compounds.
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