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Thermoelectric properties of the Kondo insulator FeSb _2

机译:近藤绝缘子FeSb _2的热电性能

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Recently it was shown [A. Bentien, S. Johnsen, G.K.H. Madsen, B.B. Iversen, F. Steglich, Europhys. Lett. 80, 17008 (2007)], that the strongly correlated Kondo insulator FeSb2 exhibits a colossal Seebeck coefficient; however, due to its large lattice thermal conductivity, the dimensionless thermoelectric figure of merit (zT) is only 0.005 at 12 K. This experimental result motivate us to perform a theoretical study of the thermoelectric properties of Kondo insulators, within the framework of the X-boson approach [R. Franco, M.S. Figueira, M.E. Foglio, Phys. Rev. B 66, 045112 (2002)] for the periodic Anderson model. We consider a set of parameters adequate for describing the compound FeSb2, and we calculate the resistivity, the thermoelectric power (Seebeck coefficient), the charge carrier thermal conductance, the thermoelectric factor power (zT), the Wiedemann-Franz law, the specific heat, and the Sommerfeld's coefficient. The result of the colossal maximum of the Seebeck coefficient, at low temperatures, has the same order of magnitude as the experimental result [A. Bentien, S. Johnsen, G.K.H. Madsen, B.B. Iversen, F. Steglich, Europhys. Lett. 80, 17008 (2007)]. We also show that those temperature region presents an intermediate valence behavior, characterized by a moderate increase of the Sommerfeld's δ coefficient.
机译:最近显示[A.本蒂恩·约翰逊(S. Johnsen),G.K.H。 Madsen,B.B。Iversen,F。Steglich,Europhys。来吧80,17008(2007)],高度相关的近藤绝缘子FeSb2表现出巨大的塞贝克系数;然而,由于其较大的晶格导热系数,在12 K时无因次热电因数(zT)仅为0.005。这一实验结果促使我们在X的框架内对近藤绝缘子的热电特性进行理论研究。 -玻色子方法[R.佛朗哥Figueira,医学博士Foglio,物理Rev.B 66,045112(2002)]用于周期安德森模型。我们考虑一组足以描述化合物FeSb2的参数,然后计算电阻率,热电功率(塞贝克系数),电荷载流子热导率,热电因子功率(zT),维德曼-弗朗兹定律,比热,以及Sommerfeld系数。塞贝克系数的巨大最大值在低温下的结果与实验结果具有相同的数量级[A.本蒂恩·约翰逊(S. Johnsen),G.K.H。 Madsen,B.B。Iversen,F。Steglich,Europhys。来吧80,17008(2007)]。我们还表明,这些温度区域呈现中间价态行为,其特征是Sommerfeldδ系数适度增加。

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