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FeSe-derived superconductors show some unique behaviors relative to iron-pnictide superconductors, which are very helpful to understand the mechanism of superconductivity in high-Tc iron-based superconductors. The low-energy electronic…

Superconductivity · Physics 2014-12-17 X. F. Lu , N. Z. Wang , H. Wu , Y. P. Wu , D. Zhao , X. Z. Zeng , X. G. Luo , T. Wu , W. Bao , G. H. Zhang , F. Q. Huang , Q. Z. Huang , X. H. Chen

We propose that the contrasting low-temperature behaviors observed experimentally among isostructural and isoelectronic materials, like non-superconducting and nonmagnetic MgFeGe, magnetically ordered NaFeAs, and superconducting LiFeAs, can…

Superconductivity · Physics 2016-03-21 Ming-Cui Ding , Yu-Zhong Zhang

Less than two years after the discovery of high temperature superconductivity in oxypnictide LaFeAs(O,F) several families of superconductors based on Fe layers (1111, 122, 11, 111) are available. They share several characteristics with…

High-temperature (high-$T_{\rm c}$) superconductivity appears as a consequence of the carrier-doping of an undoped parent compound exhibiting antiferromagnetic order; thereby, ground-state properties of the parent compound are closely…

The iron-based superconductors had a significant impact on condensed matter physics. They have a common structural motif of a two-dimensional square iron lattice and exhibit fruitful physical properties as a strongly correlated electron…

Superconductivity · Physics 2022-02-18 H. Takahashi , R. Kikuchi , C. Kawashima , S. Imaizumi , T. Aoyama , K. Ohgushi

The influence of a partial substitution with S, Te, Co, Ni and Cu atoms on the electronic structure of the FeSe superconductor has been investigated within the density functional theory. The results of the supercell calculations reveal…

Superconductivity · Physics 2013-08-13 A. Ciechan , M. J. Winiarski , M. Samsel-Czekała

The FeSe-based superconductors exhibit a wide range of critical temperature Tc under a variety of material and physical conditions, but extensive studies to date have yet to produce a consensus view on the underlying mechanism. Here we…

The discovery of high-temperature superconductivity in Fe-based compounds [1,2] has triggered numerous investigations on the interplay between superconductivity and magnetism [3] and, more recently, on the enhancement of transition…

This article reviews recent experimental investigations on two binary Fe-chalcogenides: FeSe and Fe$_{1+y}$Te. The main focus is on synthesis, single crystal growth, chemical composition, as well as on the effect of excess iron on…

Superconductivity · Physics 2016-06-06 Sahana Rößler , Cevriye Koz , Steffen Wirth , Ulrich Schwarz

Unlike the parent phases of the iron-arsenide high Tc superconductors, undoped FeSe is not magnetically ordered and exhibits superconductivity with Tc~9K. Equally surprising is the fact that applied pressure dramatically enhances the modest…

Superconductivity · Physics 2009-05-05 T. Imai , K. Ahilan , F. L. Ning , T. M. McQueen , R. J. Cava

Superconductivity has been found in the iron-arsenides with different structures by alternative stacking of the conducting Fe2As2 layers and spacer layers including alkali- or alkali-earth metal ions and PbO- or perovskite-type oxides…

Superconductivity · Physics 2015-06-17 X. F. Lu , N. Z. Wang , G. H. Zhang , X. G. Luo , Z. M. Ma , B. Lei , F. Q. Huang , X. H. Chen

We report here that a new superconducting phase with much higher Tc has been found in K intercalated FeSe compound with excess Fe. We successfully grew crystals by precisely controlling the starting amount of Fe. Besides the superconducting…

Superconductivity · Physics 2013-02-08 A. M. Zhang , T. L. Xia , K. Liu , W. Tong , Z. R. Yang , Q. M. Zhang

Magnetic spin fluctuations is one candidate to produce the bosonic modes that mediate the superconductivity in the ferrous superconductors. Up until now, all of the LaOFeAs and BaFe2As2 structure types have simple commensurate magnetic…

The electronic structure and magnetism of LiFeO$_{2}$Fe$_{2}$Se$_{2}$ are investigated using the first-principle calculations. The ground state is N$\acute{e}$el antiferromagnetic (AFM) Mott insulating state for Fe1 with localized magnetism…

Superconductivity · Physics 2014-02-20 Da-Yong Liu , Xiang-Long Yu , Ya-Min Quan , Xiao-Jun Zheng , Liang-Jian Zou

A new iron-based superconductor, Lix(C6H16N2)yFe2-zSe2, with Tc = 38 K has successfully been synthesized via the intercalation of lithium and hexamethylenediamine into FeSe. The superconducting transition has been confirmed not only by…

Superconductivity · Physics 2016-01-14 S. Hosono , T. Noji , T. Hatakeda , T. Kawamata , M. Kato , Y. Koike

Superconductivity with transition temperature Tc above 40 K was observed in protonated FeSe (Hy-FeSe) previously with the ionic liquid of EMIM-BF4 used in the electrochemical process. However, the real superconducting phase is not clear…

Superconductivity · Physics 2021-11-23 Jinhua Wang , Qing Li , Wei Xie , Guanyu Chen , Xiyu Zhu , Hai-Hu Wen

Iron Selenide, Fe1.01Se, the layered parent compound of the recently discovered superconducting arsenide family, has previously been shown to be non magnetic and superconducting with a critical temperature of 8 K. Here we show that copper…

Superconductivity · Physics 2009-08-12 A J Williams , T M McQueen , V Ksenofontov , C Felser , R J Cava

Pressure-dependent diffraction response of the superconducting phase separated Cs0.72Fe1.57Se2 has been studied using synchrotron radiation up to the pressure of 19 GPa. The main and secondary phases of Cs0.72Fe1.57Se2 have been observed in…

All the iron-based superconductors identified to date share a square lattice composed of Fe atoms as a common feature, despite having different crystal structures. In copper-based materials, the superconducting phase emerges not only in…

Iron orbitals in orthorhombic iron selenide (FeSe) can produce charge-like multipoles that are polar (parity-odd). Orbitals in question include Fe(3d), Fe(4p) and p-type ligands that participate in transport properties and bonding. The…

Strongly Correlated Electrons · Physics 2016-03-09 S. W. Lovesey
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