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The FeSe superconductor and its related systems have attracted much attention in the iron-based superconductors owing to their simple crystal structure and peculiar electronic and physical properties. The bulk FeSe superconductor has a…

Superconductivity · Physics 2015-06-24 Xu Liu , Lin Zhao , Shaolong He , Junfeng He , Defa Liu , Daixiang Mou , Bing Shen , Yong Hu , Jianwei Huang , X. J. Zhou

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

We have employed a new route to synthesize single phase F-doped LaOFeAs compound and confirmed the superconductivity above 20 K in this Fe-based system. We show that the new superconductor has a rather high upper critical field of about 54…

Superconductivity · Physics 2009-11-13 G. F. Chen , Z. Li , G. Li , J. Zhou , D. Wu , J. Dong , W. Z. Hu , P. Zheng , Z. J. Chen , H. Q. Yuan , J. Singleton , J. L. Luo , N. L. Wang

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…

The phase diagram of LaFeAs$_{1-x}$P$_x$O system has been extensively studied through hole- and electron-doping as well as As/P-substitution. It has been revealed that there are three different superconducting phases with different Fermi…

Superconductivity · Physics 2017-07-03 S. Miyasaka , M. Uekubo , H. Tsuji , M. Nakajima , T. Shiota , H. Mukuda , S. Tajima , H. Sagayama , H. Nakao , R. Kumai , Y. Murakami

We have carried out a systematic study of the PbO-type compound FeSe_{1-x}Te_x (x = 0~1), where Te substitution effect on superconductivity is investigated. It is found that superconducting transition temperature reaches a maximum of…

In unconventional superconductors, it is generally believed that understanding the physical properties of the normal state is a pre-requisite for understanding the superconductivity mechanism. In conventional superconductors like niobium or…

Recently a big number of works devoted to search for new hydrides with record high-temperature superconductivity and at the same time the successful synthesis of potential high-TC superconducting FeH5 was reported. We present a systematic…

Superconductivity · Physics 2018-02-20 Alexander G. Kvashnin , Ivan A. Kruglov , Dmitrii V. Semenok , Artem R. Oganov

A complete phase diagram and its corresponding physical properties are essential prerequisites to understand the underlying mechanism of iron based superconductivity. For the structurally simplest 11 (FeSeTe) system, earlier attempts using…

The recent observation of high-temperature superconductivity in one unit cell thick FeSe on SrTiO3 (1UC FeSe/STO)1 initiated a new pathway to realizing even higher transition temperature (Tc) superconductors and established a promising…

Superconductivity · Physics 2016-03-10 Y. C. Tian , W. H. Zhang , F. S. Li , Y. L. Wu , Q. Wu , F. Sun , Lili Wang , Xucun Ma , Qi-Kun Xue , Jimin Zhao

Here we report the synthesis and basic characterization of LaFe1-xCoxAsO for several values of x. The parent phase LaFeAsO orders antiferromagnetically (TN ~ 145 K). Replacing Fe with Co is expected to both electron dope the system and…

Superconductivity · Physics 2009-11-13 Athena S. Sefat , Ashfia Huq , Michael A. McGuire , Rongying Jin , Brian C. Sales , David Mandrus

Kamihara and coworkers' report of superconductivity at Tc = 26 K in fluorine-doped LaFeAsO inspired a worldwide effort to understand the nature of the superconductivity in this new class of compounds. These iron pnictide and chalcogenide…

Superconductivity · Physics 2011-12-14 G. R. Stewart

Superconducting iron chalcogenide FeSe has the simplest crystal structure among all the Fe-based superconductors. Unlike other iron pnictides, FeSe exhibits no long range magnetic order accompanying the tetragonal-to-orthorhombic structural…

The Cooper pairing and phase coherence are two fundamental aspects of superconductivity. Due to breaking time reversal symmetry, magnetic impurities are detrimental to superconductivity, yet microscopically how they affect the pairing…

In amorphous superconductors, superconducting and vortex pinning properties are strongly linked to the absence of long range order. Consequently, superconductivity and vortex phases can be studied to probe the underlying microstructure and…

Superconductivity · Physics 2015-05-13 J. Lefebvre , M. Hilke , Z. Altounian

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…

Scanning tunneling experiments on single crystals of superconducting FeTe$_{0.55}$Se$_{0.45}$ have recently provided evidence for discrete energy levels inside vortices. Although predicted long ago, such levels are seldom resolved due to…

Superconductivity · Physics 2018-10-29 Christophe Berthod

When exposed to high magnetic fields, certain materials manifest an exotic superconducting (SC) phase that has attracted considerable attention. A proposed explanation for the origin of the high-field SC phase is the…

The Ca10(PtnAs8)(Fe2As2)5 (n=3,4) compounds are a new type of iron pnictide superconductors whose structures consist of stacking Ca-PtnAs8-Ca-Fe2As2 layers in a unit cell. When n=3 (the 10-3-8 phase), the undoped compound is an…

Superconductivity · Physics 2023-02-06 Peiwen Gao , Liling Sun , Ni Ni , Jing Guo , Qi Wu , Chao Zhang , Dachun Gu , Ke Yang , Sheng Jiang , Robert Joseph Cava , Zhongxian Zhao

Layered material structures play a key role in enhancing electron-electron interactions to create correlated metallic phases that can transform into unconventional superconducting states. The quasi-two-dimensional electronic properties of…

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