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Related papers: Magnetism and Charge Dynamics in Iron Pnictides

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The competition of magnetic order and superconductivity is a key element in the physics of all unconventional superconductors, e.g. in high-transition-temperature cuprates 1, heavy fermions 2 and organic superconductors3. Here…

Strongly interacting electrons can exhibit novel collective phases, among which the electronic nematic phases are perhaps the most surprising as they spontaneously break rotational symmetry of the underlying crystal lattice. The electron…

Recent experiments on iron pnictides have uncovered a large in-plane resistivity anisotropy with a surprising result: the system conducts better in the antiferromagnetic x direction than in the ferromagnetic y direction. We address this…

Superconductivity · Physics 2010-11-11 B. Valenzuela , E. Bascones , M. J. Calderón

Ferromagnetism and superconductivity are antagonistic phenomena. Their coexistence implies either a modulated ferromagnetic order parameter on a lengthscale shorter than the superconducting coherence length or a weak exchange coupling…

Superconductivity · Physics 2015-01-14 A. Pogrebna , T. Mertelj , N. Vujičić , G. Cao , Z. A. Xu , D. Mihailovic

Superconductivity in the iron pnictides emerges from metallic parent compounds exhibiting intertwined stripe-type magnetic order and nematic order, with itinerant electrons suggested to be essential for both. Here we use X-ray and neutron…

Strongly Correlated Electrons · Physics 2019-03-05 Yu Song , Huibo Cao , B. C. Chakoumakos , Yang Zhao , Aifeng Wang , Hechang Lei , C. Petrovic , Robert J. Birgeneau

The presence of macroscopic phase separation into superconducting and magnetic phases in LaFeAsO$_{1-x}$F$_x$ (LFAOF) and CaFe$_{1-x}$Co$_x$AsF (CFCAF) is demonstrated by muon spin rotation (muSR) measurement across their phase boundaries…

Superconductivity · Physics 2009-04-01 S. Takeshita , R. Kadono

Nematic order often breaks the tetragonal symmetry of iron-based superconductors. It arises from regular structural transition or electronic instability in the normal phase. Here, we report the observation of a nematic superconducting…

Iron telluride (FeTe), a relative of the iron based high temperature superconductors, displays unusual magnetic order and structural transitions. Here we explore the idea that strong correlations may play an important role in these…

Materials Science · Physics 2013-05-29 Ari M. Turner , Fa Wang , Ashvin Vishwanath

The intimate connection between magnetism and superconducting pairing routinely plays a central role in determining the occurrence of unconventional superconducting states. In high-transition-temperature (high-Tc) stripe-ordered cuprate…

To examine the role of magnetism in superconductivity of iron-based superconductors, we first present first-principles optical calculations on three representative parent compounds: LaFeAsO, BaFe2As2 and LiFeAs. Both nonmagnetic (NM) and…

Superconductivity · Physics 2012-10-09 Hai Wang

Recent experimental developments in the iron pnictides have unambiguously demonstrated the existence of in-plane electronic anisotropy in the absence of the long-range magnetic order. Such anisotropy can arise from orbital ordering, which…

Strongly Correlated Electrons · Physics 2015-03-19 Weicheng Lv , Philip Phillips

Angle resolved photoemission spectroscopy (ARPES) reveals the features of the electronic structure of quasi-two-dimensional crystals, which are crucial for the formation of spin and charge ordering and determine the mechanisms of…

Superconductivity · Physics 2012-10-09 A. A. Kordyuk

We use the results of first-principles electronic structure calculations and a strong coupling perturbation approach, together with general theoretical arguments, to illustrate the differences in super-exchange interactions between the…

Strongly Correlated Electrons · Physics 2009-11-12 E. Manousakis , J. Ren , S. Meng , E. Kaxiras

75As NMR and susceptiblity were measured in a Ba(Fe1-xCox)2As2 single crystal for x=6%. Nuclear Magnetic Resonance (NMR) spectra and relaxation rates allow to show that all Fe sites experience an incommensurate magnetic ordering below…

Superconductivity · Physics 2015-05-13 Y. Laplace , J. Bobroff , F. Rullier-Albenque , D. Colson , A. Forget

The interplay of structural and electronic phases in iron-based superconductors is a central theme in the search for the superconducting pairing mechanism. While electronic nematicity, defined as the breaking of four-fold symmetry triggered…

Similar to the cuprate high TC superconductors, the iron pnictide superconductors also lie in close proximity to a magnetically ordered phase. A central debate concerning the superconducting mechanism is whether the local magnetic moments…

Superconductivity · Physics 2013-03-13 Xiaodong Zhou , Peng Cai , Aifeng Wang , Wei Ruan , Cun Ye , Xianhui Chen , Yizhuang You , Zheng-Yu Weng , Yayu Wang

We examine electronic states of antiferromagnetic phase in iron pnictides by mean-field calculations of the optical conductivity. We find that a five-band model exhibiting a small magnetic moment, inconsistent with the first-principles…

Superconductivity · Physics 2009-12-14 E. Kaneshita , T. Morinari , T. Tohyama

Superconductivity develops in metals upon the formation of a coherent macroscopic quantum state of electron pairs. Iron pnictides and chalcogenides are materials that have high superconducting transition temperatures. In this Review, we…

Superconductivity · Physics 2016-04-14 Qimiao Si , Rong Yu , Elihu Abrahams

In unconventional superconductors such as cuprates and iron pnictides and chalcogenides, phase stiffness - a measure of the energy cost associated with superconducting phase variations - is on the same order of magnitude as the strength of…

An ordered phase showing remarkable electronic anisotropy in proximity to the superconducting phase is now a hot issue in the field of high-transition-temperature superconductivity. As in the case of copper oxides, superconductivity in iron…

Strongly Correlated Electrons · Physics 2011-07-27 M. Nakajima , T. Liang , S. Ishida , Y. Tomioka , K. Kihou , C. H. Lee , A. Iyo , H. Eisaki , T. Kakeshita , T. Ito , S. Uchida