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Electronically driven nematic order is often considered as an essential ingredient of high-temperature superconductivity. Its elusive nature in iron-based supercon- ductors resulted in a controversy not only as regards its origin but also…

Clarifying the origin of nematic state in FeSe is one of urgent problems in the field of iron-based superconductivity. Motivated by the discovery of a nematic solution in the density-functional theory implemented by on-site Coulomb…

Strongly Correlated Electrons · Physics 2021-10-14 Takemi Yamada , Takami Tohyama

The nematic order (nematicity) is considered one of the essential ingredients to understand the mechanism of Fe-based superconductivity. In most Fe-based superconductors (pnictides), nematic order is reasonably close to the…

Electronic nematicity, a correlated state characterized by broken rotational symmetry, has been recognized as a ubiquitous feature intertwined with unconventional electron pairing in various iron-based superconductors. Here we employ…

A very fundamental and unconventional characteristic of superconductivity in iron-based materials is that it occurs in the vicinity of {\it two} other instabilities. Apart from a tendency towards magnetic order, these Fe-based systems have…

Superconductivity · Physics 2015-01-26 S. -H. Baek , D. V. Efremov , J. M. Ok , J. S. Kim , Jeroen van den Brink , B. Büchner

The electronic nematic phase is an unconventional state of matter that spontaneously breaks the rotational symmetry of electrons. In iron-pnictides/chalcogenides and cuprates, the nematic ordering and fluctuations have been suggested to…

Strongly Correlated Electrons · Physics 2019-05-21 T. Shimojima , Y. Suzuki , A. Nakamura , N. Mitsuishi , S. Kasahara , T. Shibauchi , Y. Matsuda , Y. Ishida , S. Shin , K. Ishizaka

Bulk FeSe is a special iron-based material in which superconductivity emerges inside a well-developed nematic phase. We present a microscopic model for this nematic superconducting state, which takes into account the mixing between $s-$wave…

Superconductivity · Physics 2018-07-13 Jian Kang , Rafael M. Fernandes , Andrey V. Chubukov

Study of Fe based compounds have drawn much attention due to the discovery of superconductivity as well as many other exotic electronic properties. Here, we review some of our works in these materials carried out employing density…

Superconductivity · Physics 2018-09-26 Khadiza Ali , Kalobaran Maiti

The electronic structure of the enigmatic iron-based superconductor FeSe has puzzled researchers since spectroscopic probes failed to observe the expected electron pocket at the $Y$ point in the 1-Fe Brillouin zone. It has been speculated…

Superconductivity · Physics 2021-02-16 Daniel Steffensen , Andreas Kreisel , P. J. Hirschfeld , Brian M. Andersen

The nature and origin of electronic nematicity remains a significant challenge in our understanding of the iron-based superconductors. This is particularly evident in the iron chalcogenide, FeSe, where it is currently unclear how the…

Superconductivity · Physics 2022-01-28 Luke C. Rhodes , Matthias Eschrig , Timur K. Kim , Matthew D. Watson

The iron-based superconductor FeSe has attracted much recent attention because of its simple crystal structure, distinct electronic structure and rich physics exhibited by itself and its derivatives. Determination of its intrinsic…

A rich variety of nematic/smectic orders in Fe-based superconductors is an important unsolved problem in strongly correlated electron systems. A unified understanding of these orders has been investigated for the last decade. In this…

Strongly Correlated Electrons · Physics 2022-07-20 Seiichiro Onari , Hiroshi Kontani

Nematicity and magnetism are two key features in Fe-based superconductors, and their interplay is one of the most important unsolved problems. In FeSe, the magnetic order is absent below the structural transition temperature $T_{str}=90$K,…

Strongly Correlated Electrons · Physics 2016-06-07 Youichi Yamakawa , Seiichiro Onari , Hiroshi Kontani

Nematicity is ubiquitous in electronic phases of high transition temperature superconductors, particularly in iron-based superconductors (IBSCs). Order parameter that characterizes the nematic phase has been investigated in momentum space,…

Mesoscale and Nanoscale Physics · Physics 2021-09-09 T. Shimojima , Y. Motoyui , T. Taniuchi , C. Bareille , S. Onari , H. Kontani , M. Nakajima , S. Kasahara , T. Shibauchi , Y. Matsuda , S. Shin

The spontaneous appearance of nematicity, a state of matter that breaks rotation but not translation symmetry, is one of the most intriguing property of the iron based superconductors (Fe SC), and has relevance for the cuprates as well.…

FeSe is a fascinating superconducting material at the frontier of research in condensed matter physics. Here we provide an overview on the current understanding of the electronic structure of FeSe, focusing in particular on its low energy…

Superconductivity · Physics 2018-01-01 Amalia I. Coldea , Matthew D. Watson

Isoelectronic substitution is an ideal tuning parameter to alter electronic states and correlations in iron-based superconductors. As this substitution takes place outside the conducting Fe planes, the electronic behaviour is less affected…

Superconductivity · Physics 2021-05-25 Amalia I. Coldea

We review our recent experimental results on the electronic nematic phase in electron- and hole-doped BaFe$_2$As$_2$ and FeSe. The nematic susceptibility is extracted from shear-modulus data (obtained using a three-point-bending method in a…

Superconductivity · Physics 2015-09-14 Anna E. Böhmer , Christoph Meingast

Superconductivity emerges in proximity to a nematic phase in most iron-based superconductors. It is therefore important to understand the impact of nematicity on the electronic structure. Orbital assignment and tracking across the nematic…

The origin of spontaneous electronic nematic ordering provides important information for understanding iron-based superconductors. Here, we analyze a scenario where the $d_{xy}$ orbital strongly contributes to nematic ordering in FeSe. We…

Superconductivity · Physics 2021-06-28 Luke C. Rhodes , Jakob Böker , Marvin A. Müller , Matthias Eschrig , Ilya M. Eremin
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