Coherence–incoherence crossover in the normal state of iron oxypnictides and importance of Hund's rule coupling
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G. Kotliar | G. Kotliar | K. Haule | K. Haule
[1] R. Arita,et al. Unconventional superconductivity originating from disconnected Fermi surfaces in LaO$_{1-x}$F$_x$FeAs} , 2008 .
[2] J. Howe,et al. Electron Correlations in the Low Carrier Density LaFeAsO0.89F0.11 Superconductor (Tc ~ 28 K) , 2008, 0803.2528.
[3] Chaoxing Liu,et al. Pairing strengths for a two orbital model of the Fe-pnictides , 2008, 0804.4332.
[4] E Tosatti,et al. Strongly Correlated Superconductivity , 2002, Science.
[5] C. Marianetti,et al. Electronic structure calculations with dynamical mean-field theory , 2005, cond-mat/0511085.
[6] Z. Wang,et al. Spin fluctuations, interband coupling and unconventional pairing in iron-based superconductors , 2008, 0804.4166.
[7] R. Arita,et al. Erratum: Unconventional pairing originating from the disconnected fermi surfaces of superconducting LaFeAsO1-xFx (Physical Review Letters (2008) 101 (087004)) , 2009 .
[8] V. Anisimov,et al. Coulomb correlation effects in LaFeAsO: An LDA + DMFT(QMC) study , 2008, 0804.3283.
[9] Hideo Hosono,et al. Iron-based layered superconductor La[O(1-x)F(x)]FeAs (x = 0.05-0.12) with T(c) = 26 K. , 2008, Journal of the American Chemical Society.
[10] E. A. Payzant,et al. Phase Transitions in LaFeAsO: Structural, Magnetic, Elastic, and Transport Properties, Heat Capacity and Mössbauer Spectra , 2008, 0806.3878.
[11] L. Boeri,et al. Is LaFeAsO1-xFx an electron-phonon superconductor? , 2008, Physical review letters.
[12] T. Yildirim. Origin of the 150-K anomaly in LaFeAsO: competing antiferromagnetic interactions, frustration, and a structural phase transition. , 2008, Physical review letters.
[13] Chandra,et al. Ising transition in frustrated Heisenberg models. , 1990, Physical review letters.
[14] Hund’s coupling and the metal-insulator transition in the two-band Hubbard model , 2004, cond-mat/0411186.
[15] E. Abrahams,et al. Strong correlations and magnetic frustration in the high Tc iron pnictides. , 2008, Physical review letters.
[16] Liling Sun,et al. Superconductivity at 55 K in Iron-Based F-Doped Layered Quaternary Compound Sm[O1-xFx] FeAs , 2008 .
[17] H. Mook,et al. Magnetic order close to superconductivity in the iron-based layered LaO1-xFxFeAs systems , 2008, Nature.
[18] S. Lebègue,et al. Electron-hole symmetry and magnetic coupling in antiferromagnetic LaFeAsO. , 2008, Physical review letters.
[19] S. Y. Li,et al. Anomalous transport properties and phase diagram of the FeAs-based SmFeAsO1-xFx superconductors. , 2008, Physical review letters.
[20] H. Mook,et al. Magnetic Order versus Superconductivity in the Iron-based La ( O 1-xFx ) FeAs Systems , 2009 .
[21] G. Kotliar,et al. Correlated electronic structure of LaO1-xFxFeAs. , 2008, Physical review letters.
[22] Gang Li,et al. Competing orders and spin-density-wave instability in La(O1−xFx)FeAs , 2008, 0803.3426.
[23] S. Y. Li,et al. Phase Diagram and Quantum Critical Point in Newly Discovered Superconductors: SmO_{1-x}F_xFeAs , 2008, 0804.2105.
[24] Hideo Hosono,et al. Iron-Based Layered Superconductor La[O1-xFx]FeAs (x = 0.05—0.12) with Tc = 26 K. , 2008 .
[25] M. Du,et al. Density functional study of LaFeAsO(1-x)F(x): a low carrier density superconductor near itinerant magnetism. , 2008, Physical review letters.
[26] T. Xiang,et al. Arsenic-bridged antiferromagnetic superexchange interactions in LaFeAsO , 2008, 0804.3370.
[27] Kristjan Haule. Quantum Monte Carlo impurity solver for cluster dynamical mean-field theory and electronic structure calculations with adjustable cluster base , 2007 .
[28] Xiyu Zhu,et al. Upper critical field, Hall effect and magnetoresistance in the iron-based layered superconductor LaFeAsO0.9F0.1−δ , 2008, 0803.0623.
[29] S. W. Kim,et al. Crystallographic phase transition and high-Tc superconductivity in LaFeAsO:F , 2008, 0804.3569.
[30] S. Y. Li,et al. Specific heat of iron-based high-$T_c$ superconductor SmO$_{1-x}$F$_x$FeAs , 2008, 0804.3642.