Fermi-surface reconstruction involving two van Hove singularities across the antiferromagnetic transition in BaFe2As2
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T. Oguchi | H. Eisaki | Y. Aiura | M. Arita | A. Ino | H. Namatame | M. Taniguchi | H. Iwasawa | K. Kihou | A. Iyo | I. Hase | Y. Utsumi | Ching Hua Lee | H. Sato | H. Anzai | Y. Nakashima | S. Nagato
[1] W. Marsden. I and J , 2012 .
[2] Y. Tomioka,et al. Complete Fermi surface in BaFe2As2 observed via Shubnikov-de Haas oscillation measurements on detwinned single crystals. , 2011, Physical review letters.
[3] E. Rotenberg,et al. Uniaxial "nematic-like" electronic structure and Fermi surface of untwinned CaFe2As2 , 2010, 1009.0271.
[4] Y. Tomioka,et al. Evolution of the optical spectrum with doping in Ba(Fe 1-x Co x ) 2 As 2 , 2010, 1003.5038.
[5] A. Bostwick,et al. Unexpected Fermi-surface nesting in the pnictide parent compounds BaFe 2 As 2 and CaFe 2 As 2 revealed by angle-resolved photoemission spectroscopy , 2010 .
[6] E. Fradkin,et al. Electron Nematic Phases Proliferate , 2010, Science.
[7] P. Canfield,et al. Nematic Electronic Structure in the “Parent” State of the Iron-Based Superconductor Ca(Fe1–xCox)2As2 , 2010, Science.
[8] Timur K. Kim,et al. Superconductivity without nesting in LiFeAs. , 2010, Physical review letters.
[9] A. Gloskovskii,et al. Orbital character variation of the Fermi surface and doping dependent changes of the dimensionality in BaFe2−xCoxAs2 from angle-resolved photoemission spectroscopy , 2009, 0910.0147.
[10] T. Togashi,et al. Orbital-dependent modifications of electronic structure across the magnetostructural transition in BaFe2As2. , 2009, Physical review letters.
[11] T. Xiang,et al. Electronic structures of ternary iron arsenides AFe2As2 (A = Ba, Ca, or Sr) , 2008, 0806.3526.
[12] Lin Zhao,et al. Band-structure reorganization across the magnetic transition in BaFe2As2 seen via high-resolution angle-resolved photoemission , 2009 .
[13] Z. Hussain,et al. Unconventional electronic reconstruction in undoped ( Ba , Sr ) Fe 2 As 2 across the spin density wave transition , 2009, 0909.0831.
[14] R. Arita,et al. Three-Dimensional Electronic Structure of Superconducting Iron Pnictides Observed by Angle-Resolved Photoemission Spectroscopy , 2009, 0906.1846.
[15] David J. Singh,et al. Evidence for three-dimensional Fermi-surface topology of the layered electron-doped iron superconductor Ba(Fe 1-x Co x ) 2 As 2 , 2009 .
[16] Dung-Hai Lee,et al. Antiferromagnetically driven electronic correlations in iron pnictides and cuprates , 2009, 0905.1711.
[17] A. Bostwick,et al. Three- to two-dimensional transition of the electronic structure in CaFe2As2: a parent compound for an iron arsenic high-temperature superconductor. , 2009, Physical review letters.
[18] R. Prozorov,et al. Resistivity anisotropy of A Fe 2 As 2 ( A = Ca , Sr, Ba): Direct versus Montgomery technique measurements , 2009, 0903.0820.
[19] C. Kucharczyk,et al. Quantum oscillations in the parent pnictide BaFe 2 As 2 : Itinerant electrons in the reconstructed state , 2009, 0902.1172.
[20] M. Knupfer,et al. (π, π) electronic order in iron arsenide superconductors , 2008, Nature.
[21] Wei Bao,et al. Neutron-diffraction measurements of magnetic order and a structural transition in the parent BaFe2As2 compound of FeAs-based high-temperature superconductors. , 2008, Physical review letters.
[22] Haijun Zhang,et al. Electron-hole asymmetry and quantum critical point in hole-doped BaFe2As2 , 2008, 0807.1401.
[23] G. Lonzarich,et al. Quantum oscillations in the parent magnetic phase of an iron arsenide high temperature superconductor , 2008, 0806.4726.
[24] 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.
[25] A. Fujimori,et al. Unmasking the Nodal Quasiparticle Dynamics in Cuprate Superconductors Using Low-Energy Photoemission , 2006, cond-mat/0603006.
[26] H. Kohno,et al. Instability toward Formation of Quasi-One-Dimensional Fermi Surface in Two-Dimensional t-J Model , 2000, 2104.10467.
[27] Metzner,et al. d-wave superconductivity and pomeranchuk instability in the two-dimensional hubbard model , 2000, Physical review letters.
[28] H. Kohno,et al. Possible Quasi-One-Dimensional Fermi Surface in La2-xSrxCuO4. , 2000, 2104.10468.
[29] W. A. Dench,et al. Quantitative electron spectroscopy of surfaces: A standard data base for electron inelastic mean free paths in solids , 1979 .