硼化镁
超导电性
凝聚态物理
原子轨道
硼
从头算
转变温度
从头算量子化学方法
物理
声子
材料科学
临界电流
分子
核物理学
量子力学
电子
作者
Hyoung Joon Choi,David Roundy,Hong Sun,Marvin L. Cohen,Steven G. Louie
出处
期刊:Nature
[Nature Portfolio]
日期:2002-08-01
卷期号:418 (6899): 758-760
被引量:1021
摘要
Magnesium diboride differs from ordinary metallic superconductors in several important ways, including the failure of conventional models to predict accurately its unusually high transition temperature, the effects of isotope substitution on the critical transition temperature, and its anomalous specific heat. A detailed examination of the energy associated with the formation of charge-carrying pairs, referred to as the 'superconducting energy gap', should clarify why MgB(2) is different. Some early experimental studies have indicated that MgB(2) has multiple gaps, but past theoretical studies have not explained from first principles the origin of these gaps and their effects. Here we report an ab initio calculation of the superconducting gaps in MgB(2) and their effects on measurable quantities. An important feature is that the electronic states dominated by orbitals in the boron plane couple strongly to specific phonon modes, making pair formation favourable. This explains the high transition temperature, the anomalous structure in the specific heat, and the existence of multiple gaps in this material. Our analysis suggests comparable or higher transition temperatures may result in layered materials based on B, C and N with partially filled planar orbitals.
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