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Related papers: Fe-based superconductors: seven years later

200 papers

This review article is a commemoration of the 30th anniversary of the discovery of YBa2Cu3O7-delta high-temperature superconductors (HTSCs). As a result of this discovery a family of (RE)Ba2Cu3O7-delta (RE stands for "rare earth") HTSCs has…

Superconductivity · Physics 2018-09-07 S. I. Bondarenko , V. P. Koverya , A. V. Krevsun , S. I. Link

The iron-based superconductors that contain FeAs layers as the fundamental building block in the crystal structures have been rationalized in the past using ideas based on the Fermi Surface nesting of hole and electron pockets when in the…

Superconductivity · Physics 2015-06-11 Elbio Dagotto

Tetragonal FeSe is a superconductor with a transition temperature Tc of 8 K and shows a huge enhancement of Tc with applying pressure. Tetragonal FeTe has a structure very analogous to superconducting FeSe, but does not show superconducting…

Superconductivity · Physics 2009-08-09 Y. Mizuguchi , F. Tomioka , S. Tsuda , T. Yamaguchi , Y. Takano

The importance and non-trivial properties of superconductor normal metal interfaces was discovered by Alexander Fyodorovich Andreev more than 60 years ago. Only much later these hybrids have found wide interest in applications such as…

A single band $t$-$U$-$J_1$-$J_2$ model is proposed as the minimum model to describe the superconductivity of the newly discovered iron-based superconductors $R(O_{1-x}F_x)FeAs$ and $RO_{1-x}FeAs$ ($R=La, Ce, Sm, Pr, Nd,Gd$). With the…

Superconductivity · Physics 2008-05-07 Jian Li , Yupeng Wang

Since their experimental discovery in 1989, the electron-doped cuprate superconductors have presented both a major challenge and a major opportunity. The major challenge has been to determine whether these materials are fundamentally…

Superconductivity · Physics 2019-06-14 J. E. Hirsch , F. Marsiglio

Phase diagrams play a primary role in the understanding of materials properties. For iron-based superconductors (Fe-SC), the correct definition of their phase diagrams is crucial because of the close interplay between their…

Superconductivity · Physics 2017-02-08 A. Martinelli , F. Bernardini , S. Massidda

Conventional superconductivity, as used in this review, refers to electron-phonon coupled superconducting electron-pairs described by BCS theory. Unconventional superconductivity refers to superconductors where the Cooper pairs are not…

Superconductivity · Physics 2017-06-07 G. R. Stewart

An overview of the crystal structures and physical properties of the recently discovered iron-platinum-arsenide superconductors, Ca10(PtnAs8)(Fe2-xPtxAs2)5 (n = 3 and 4), which have a superconducting transition temperature up to 38 K, is…

Crystal structures and microstructural features, such as structural phase transitions, defect structures, chemical and structural inhomogeneities, are known to have profound effects on the physical properties of superconducting materials.…

Superconductivity · Physics 2013-07-22 Wang Zhen , Cai Yao , Yang Huai-Xin , Tian Huan-Fang , Wang Zhi-Wei , Ma Chao , Chen Zhen , Li Jian-Qi

Since 2008, many new families of iron-based high temperature (high-$T_c$) superconductors have been discovered \cite{Hosono,ChenXH,FeTe,ChenXL}. Unlike all parent compounds of cuprates that share a common antiferromagnetically (AF) ordered…

Superconductivity · Physics 2012-04-05 Jiangping Hu , Bao Xu , Wuming Liu , Ningning Hao , Yupeng Wang

We summarize progress in the development and application of metamaterial structures utilizing superconducting elements. After a brief review of the salient features of superconductivity, the advantages of superconducting metamaterials over…

Superconductivity · Physics 2010-11-18 Steven M. Anlage

In this editorial, we first give a brief survey of the field of iron-selenide superconductivity, both in the case of bulk FeSe characterized by the co-existence of superconductivity and nematic order, and in the case of electron-doped FeSe…

Superconductivity · Physics 2022-05-24 Jose P. Rodriguez , Dmytro S. Inosov , Jun Zhao

Seven distinct families of superconductors with critical temperatures at ambient pressure that equal or surpass the historic 23 K limit for Nb3Ge have been discovered in the last 25 years. Each family is reviewed briefly and their common…

Superconductivity · Physics 2010-12-09 J. Paul Attfield

The latest discovery of high temperature superconductivity signature in single-layer FeSe is significant because it is possible to break the superconducting critical temperature ceiling (maximum Tc~55 K) that has been stagnant since the…

The surprising discovery of high-$T_c$ superconductivity in iron-based compounds has prompted an intensive investigation on the role of interaction and magnetism in the these materials. Based on the general features of multi-bands and…

Superconductivity · Physics 2013-11-27 Yi-Zhuang You , Zheng-Yu Weng

The rich novel materials class of iron based superconductors turned out to exhibit a very complex electronic structure, despite of the simplicity of their crystal structures. For various approaches to study the instability against magnetic…

Superconductivity · Physics 2013-05-29 H. Eschrig , K. Koepernik

Superconductivity was discovered in 1911 by Kamerlingh Onnes and Holst in mercury at the temperature of liquid helium (4.2 K). It took almost 50 years until in 1957 a microscopic theory of superconductivity, the so-called BCS theory, was…

Superconductivity · Physics 2019-11-07 Annette Bussmann-Holder , Hugo Keller

The origin of magnetism and superconductivity in iron-based superconductors is still unclear. Here, by investigating the momentum-dependent particle-hole excitations which quantify the tendency of itinerant electrons towards various…

Superconductivity · Physics 2014-07-21 Ming-Cui Ding , Hai-Qing Lin , Yu-Zhong Zhang

We report the first-principles study of superconducting critical temperature and superconducting properties of Fe-based superconductors taking into account on the same footing phonon, charge and spin-fluctuation mediated Cooper pairing. We…

Superconductivity · Physics 2014-11-11 F. Essenberger , A. Sanna , P. Buczek , A. Ernst , L. Sandratskii , E. K. U. Gross