Satellites and large doping and temperature dependence of electronic properties in hole-doped BaFe 2As 2

被引:0
|
作者
Werner P. [1 ,2 ]
Casula M. [3 ]
Miyake T. [4 ,5 ,6 ]
Aryasetiawan F. [7 ,8 ]
Millis A.J. [9 ]
Biermann S. [5 ,10 ]
机构
[1] Department of Physics, University of Fribourg
[2] Theoretische Physik, ETH Zurich
[3] CNRS, Institut de Minéralogie et de Physique des Milieux Condensés, Université Pierre et Marie Curie, 4 place Jussieu, 75252
[4] Nanosystem Research Institute (NRI) RICS, AIST, Tsukuba
[5] Japan Science and Technology Agency, CREST, Kawaguchi
[6] Japan Science and Technology Agency, TRIP, Chiyoda
[7] Department of Physics, Mathematical Physics, Lund University, Sölvegatan 14A
[8] Graduate School of Advanced Integration Science, Chiba University
[9] Department of Physics, Columbia University, 538 West 120th Street, New York
[10] Centre de Physique Théorique, Ecole Polytechnique, CNRS-UMR7644
基金
美国国家科学基金会;
关键词
D O I
10.1038/nphys2250
中图分类号
学科分类号
摘要
Superconductivity has recently been discovered in several families of iron-based compounds, but despite intense research even such basic electronic properties of these materials as Fermi surfaces, effective electron masses and orbital characters are still subject to debate. Here, we address an issue that has not been considered before, namely the consequences of dynamical screening of the Coulomb interactions between Fe d electrons. We demonstrate that dynamical screening effects are important not only for higher-energy spectral features, such as correlation satellites seen in photoemission spectroscopy, but also for the low-energy electronic structure. Our analysis indicates that BaFe 2As 2 is a strongly correlated compound with strongly doping- and temperature-dependent properties. In the hole-overdoped regime an incoherent metal is found, whereas Fermi-liquid behaviour is recovered in the undoped compound. At optimal doping, the self-energy exhibits an unusual square-root energy dependence, which leads to strong band renormalizations near the Fermi level. © 2012 Macmillan Publishers Limited. All rights reserved.
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页码:331 / 337
页数:6
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