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中国物理学会期刊

双能隙超导体MgB2的热导

CSTR: 32037.14.aps.52.683

Thermal conductivity of two-energy-gap superconductor MgB2

CSTR: 32037.14.aps.52.683
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  • 测量了多晶MgB2的热导,实验温区为5—300K.在双能隙模型下,用基于BCS超导理论的BRT热导理论对实验结果进行了分析,给出MgB2中两个能隙大小分别为16和51meV.对电子热导的分析结果表明σ能带准粒子受到的杂质散射远小于π能带准粒子受到的杂质散射.与单晶MgB2的热导实验结果相比,多晶MgB2的声子热导结果表明在c方向上热传导声子受到来自σ能带准粒子的散射,显示了MgB2在能量输运上的各向异性.

     

    We present in this paper the thermal conductivity of the superconductor MgB2 between 5—300 K. The temperature dependence of the thermal conductivity can be fitted with the BRT thermal conductivity method by a phenomenological two-gap model. The sizes of the two energy gaps are 16 and 51meV. The analysis about electronic thermal conductivity indicates that the σ-band impurity scattering rate is small relative to the π-band scattering rate. In contrast to the single-crystal sample, our result indicates that the scattering of phonons from the σ-band quasi-particles exist in the c-axial direction heat transport of a polycrystalline sample. This result demonstrates the anisotropic energy transport in MgB2.

     

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