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Related papers: Nematic orders in Iron-based superconductors

200 papers

The recent discovery of superconductivity in the iron-based layered pnictides with T_c ranging between 26 and 56K generated enormous interest in the physics of these materials. Here, we review some of the peculiarities of the…

Superconductivity · Physics 2014-05-20 Ilya Eremin , Johannes Knolle , Rafael M. Fernandes , Jörg Schmalian , Andrey V. Chubukov

The superconductivity discovered in iron-pnictides is intimately related to a nematic ground state, where the C4 rotational symmetry is broken via the structural and magnetic transitions. We here study the nematicity in NaFeAs with the…

Superconductivity · Physics 2012-02-28 Y. Zhang , C. He , Z. R. Ye , J. Jiang , F. Chen , M. Xu , Q. Q. Ge , B. P. Xie , J. Wei , M. Aeschlimann , X. Y. Cui , M. Shi , J. P. Hu , D. L. Feng

We expose the theoretical mechanisms underlying disorder-induced nematicity in systems exhibiting strong fluctuations or ordering in the nematic channel. Our analysis consists of a symmetry-based Ginzburg-Landau approach and associated…

Superconductivity · Physics 2019-08-23 Daniel Steffensen , Panagiotis Kotetes , Indranil Paul , Brian M. Andersen

Large spin systems can exhibit unconventional types of magnetic ordering different from the ferromagnetic or N\'eel-like antiferromagnetic order commonly found in spin 1/2 systems. Spin-nematic phases, for instance, do not break…

Short review of the spin-fluctuation theory of superconductive pairing in iron-based pnictides and chalcogenides.

Superconductivity · Physics 2015-10-29 M. M. Korshunov

Electronic nematicity is rarely observed as an isolated instability of a correlated electron system. Instead, in iron pnictides and in certain cuprates and heavy-fermion materials, nematicity is intertwined with an underlying spin-stripe or…

Strongly Correlated Electrons · Physics 2022-09-21 W. Joe Meese , Thomas Vojta , Rafael M. Fernandes

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 nematic state of the iron-based superconductors is studied in the undoped limit of the three-orbital ($xz$, $yz$, $xy$) spin-fermion model via the introduction of lattice degrees of freedom. Monte Carlo simulations show that in order to…

Superconductivity · Physics 2014-05-27 Shuhua Liang , Adriana Moreo , Elbio Dagotto

Disorder in materials may be used to tune their functionalities, but much more strikingly, its presence can entail entirely new behavior. This happens in charge-ice where structural disorder is not weak and local, but strong and long-range…

Statistical Mechanics · Physics 2023-11-10 A. Hemmatzade , K. Essafi , M. Taillefumier , M. Müller , T. Fennell , P. M. Derlet

Recent experiments in iron pnictide superconductors reveal that, as the putative magnetic quantum critical point is approached, different types of magnetic order coexist over a narrow region of the phase diagram. Although these magnetic…

Superconductivity · Physics 2018-08-01 Morten H. Christensen , Peter P. Orth , Brian M. Andersen , Rafael M. Fernandes

The iron-based high temperature superconductors exhibit a rich phase diagram reflecting a complex interplay between spin, lattice, and orbital degrees of freedom [1-4]. The nematic state observed in many of these compounds epitomizes this…

Nematic fluctuations occur in a wide range of physical systems from liquid crystals to biological molecules to solids such as exotic magnets, cuprates and iron-based high-$T_c$ superconductors. Nematic fluctuations are thought to be closely…

The puzzling nature of magnetic and lattice phase transitions of iron pnictides is investigated via a first-principles Wannier function analysis of representative parent compound LaOFeAs. A rare ferro-orbital ordering is found to give rise…

Superconductivity · Physics 2010-01-07 Chi-Cheng Lee , Wei-Guo Yin , Wei Ku

Recent experiments suggest that besides of antiferromagnetic fluctuations nematic fluctuations may contribute to the occurrence of superconductivity in iron pnictides. Motivated by this observation we study superconductivity from nematic…

Superconductivity · Physics 2013-11-07 Hiroyuki Yamase , Roland Zeyher

Inelastic neutron scattering was employed to investigate the impact of electronic nematic order on the magnetic spectra of LaFeAsO and Ba(Fe$_{0.953}$Co$_{0.047}$)$_{2}$As$_{2}$. These materials are ideal to study the paramagnetic-nematic…

Electronic nematicity is often found in unconventional superconductors, suggesting its relevance for electronic pairing. In the strongly hole-doped iron-based superconductors, the symmetry channel and strength of the nematic fluctuations,…

Superconductivity · Physics 2021-08-11 P. Wiecki , M. Frachet , A. -A. Haghighirad , T. Wolf , C. Meingast , R. Heid , A. E. Böhmer

The origin of the nematic state is an important puzzle to be solved in iron pnictides. Iron superconductors are multiorbital systems and these orbitals play an important role at low energy. The singular $C_4$ symmetry of $d_{zx}$ and…

Superconductivity · Physics 2015-07-02 L. Fanfarillo , A. Cortijo , B. Valenzuela

The interplay of nematicity and superconductivity has been observed in a wide variety of quantum materials. To explore this interplay, we consider a two-dimensional (2D) array of nematogens, local droplets with $Z_3$ nematicity, coupled to…

Superconductivity · Physics 2024-02-13 Finn Lasse Buessen , Sopheak Sorn , Ivar Martin , Arun Paramekanti

In the iron pnictides and chalcogenides, multiple orbitals participate in the superconducting state, enabling different gap structures to be realized in distinct materials. Here we argue that the spectral weights of these orbitals can in…

Superconductivity · Physics 2014-11-25 Jian Kang , Alexander F. Kemper , Rafael M. Fernandes

In this letter, we address a novel mechanism for iron based superconductors. We study $F^{2+}$ state of iron with six 3d electrons. Five of them are localized with ferromagnetic order, while the sixth one is itinerant antiparallel with the…

Superconductivity · Physics 2019-06-28 N. Karchev