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Theoretical Study of Specific Heat and Density of States of MgB2 Superconductor in Two Band Model

机译:两带模型中MgB2超导体的比热和态密度的理论研究

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MgB2 with Tc ≈ 40 K, is a record-breaking compound among the s-p metals and alloys. It appears that this material is a rare example of the two band electronic structures, which are weakly connected with each other. Experimental results clearly reveal that boron sub-lattice conduction band is mainly responsible for superconductivity in this simple compound. Experiments such as tunneling spectroscopy, specific heat measurements, and high resolution spectroscopy show that there are two superconducting gaps. Considering a canonical two band BCS Hamiltonian containing a Fermi Surface of π- and σ-bands and following Green’s function technique and equation of motion method, we have shown that MgB2 possess two superconducting gaps. It is also pointed out that the system admits a precursor phase of Cooper pair droplets that undergoes a phase locking transition at a critical temperature below the mean field solution. Study of specific heat and density of states is also presented. The agreement between theory and experimental results for specific heat is quite convincing. The paper is organized in five sections: Introduction, Model Hamiltonian, Physical properties, Numerical calculations, Discussion and conclusions. ?
机译:Tc≈40 K的MgB2是s-p金属和合金中的创​​纪录化合物。看来,这种材料是两个带状电子结构的稀有例子,它们彼此之间是弱连接的。实验结果清楚地表明,在该简单化合物中,硼亚晶格导带是超导的主要原因。隧道光谱,比热测量和高分辨率光谱等实验表明,存在两个超导间隙。考虑到包含π和σ带费米面的规范的两带BCS哈密顿量,并遵循格林函数技术和运动方程方法,我们证明MgB2具有两个超导间隙。还需要指出的是,该系统允许库珀对液滴的前体相在低于平均场解的临界温度下经历锁相转变。还介绍了比热和状态密度的研究。对于比热,理论和实验结果之间的一致性令人信服。本文分为五个部分:简介,哈密顿量模型,物理性质,数值计算,讨论和结论。 ?

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