Electrons and phonons in the ternary alloy CaAl2-xSix as a function of composition
[摘要] We report a detailed first-principles study of the structural, electronic, and vibrational properties of the superconducting C-32 phase of the ternary alloy CaAl2-xSix, both in the experimental range 0.6 <= x <= 1.2, for which the alloy has been synthesized, and in the theoretical limits of high aluminum and high silicon concentration. Our results indicate that, in the experimental range, the dependence of the electronic bands on composition is well described by a rigid-band model, which breaks down outside this range. Such a breakdown, in the (theoretical) limit of high aluminum concentration, is connected to the appearance of vibrational instabilities and results in important differences between CaAl2 and MgB2. Unlike MgB2, the interlayer band and the out-of-plane phonons play a major role on the stability and superconductivity of CaAlSi and related C-32 intermetallic compounds.
[发布日期] 2005-12-01 [发布机构]
[效力级别] [学科分类]
[关键词] CA;SR;SUPERCONDUCTIVITY;PSEUDOPOTENTIALS [时效性]