首页> 美国政府科技报告 >Role of Pressure in Understanding the Anomalous Superconductivity in Europium (Molybdenum) sub 6 (Sulfur) sub 8 and (TMTSF) Sub 2 FSO sub 3
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Role of Pressure in Understanding the Anomalous Superconductivity in Europium (Molybdenum) sub 6 (Sulfur) sub 8 and (TMTSF) Sub 2 FSO sub 3

机译:压力在理解铕(钼)sub 6(硫)sub 8和(TmTsF)sub 2 FsO sub 3中的异常超导性中的作用

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Both the Chevrel phase compound EuMo sub 6 S sub 8 and the organic material, (TMTSF) sub 2 FSO sub 3 are superconducting only under moderate pressure. In both instances the absence of superconductivity at ambient pressure is directly attributed to a low temperature structural distortion that introduces a gap over all or part of the Fermi surface. The role of pressure is to suppress the transition and thus allow the electrons to condense into the superconducting state. In EuMo sub 6 S sub 8 , details of the pressure dependence of both the structural and superconducting transition have been explained on the basis of a competition between a charge density wave-type state and superconductivity. In the case of (TMTSF) sub 2 FSO sub 3 an anion ordering giving rise to a metal-insulator transition is responsible for suppressing superconductivity. The critical magnetic fields of EuMo sub 6 S sub 8 are extremely anomalous and are related to the magnetism of the Eu as well as the structure of the compound. (ERA citation 08:051727)

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