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Heterogeneous superconductivity onset is a common phenomenon in high-$T_c$ superconductors of both the cuprate and iron-based families. It is manifested by a fairly wide transition from the metallic to zero-resistance state. Usually, in…

Superconductivity · Physics 2023-07-04 P. D. Grigoriev , V. D. Kochev , A. P. Orlov , A. V. Frolov , A. A. Sinchenko

High-temperature superconductivity and a wide variety of exotic superconducting states discovered in FeSe-based materials have been at the frontier of research on condensed matter physics over the past decade. Unique properties originating…

Superconductivity · Physics 2020-10-05 Takasada Shibauchi , Tetsuo Hanaguri , Yuji Matsuda

Emergent electronic phenomena in iron-based superconductors have been at the forefront of condensed matter physics for more than a decade. Much has been learned about the origin and intertwined roles of ordered phases, including nematicity,…

Superconductivity · Physics 2020-09-11 Andreas Kreisel , P. J. Hirschfeld , Brian M. Andersen

The iron-based superconductor FeSe offers a unique possibility to study the interplay of superconductivity with purely nematic as well magnetic-nematic order by pressure (p) tuning. By measuring specific heat under p up to 2.36GPa, we study…

Superconductivity · Physics 2019-11-21 Elena Gati , Anna E. Böhmer , Sergey L. Bud'ko , Paul C. Canfield

There are several FeSe based superconductors, including the bulk FeSe, monolayer FeSe thin film, intercalated KxFe2-ySe2 and Li1-xFexOHFeSe, etc. Their normal states all show metallic behavior. The key player here is the FeSe layer which…

Superconductivity · Physics 2020-11-25 Jin Si , Guan-Yu Chen , Qing Li , Xiyu Zhu , Huan Yang , Hai-Hu Wen

FeSe is a unique superconductor that can be manipulated to enhance its superconductivity using different routes while its monolayer form grown on different substrates reaches a record high temperature for a two-dimensional system. In order…

The recently discovered iron arsenide superconductors, which display superconducting transition temperatures as high as 55 K, appear to share a number of general features with high-Tc cuprates, including proximity to a magnetically ordered…

The coexistence and competition between superconductivity and electronic orders, such as spin or charge density waves, have been a central issue in high transition-temperature (${T_{\rm c}}$) superconductors. Unlike other iron-based…

Among the mysteries surrounding unconventional, strongly correlated superconductors is the possibility of spatial variations in their superfluid density. We use atomic-resolution Josephson scanning tunneling microscopy to reveal a strongly…

Superconductivity · Physics 2021-01-14 D. Cho , K. M. Bastiaans , D. Chatzopoulos , G. D. Gu , M. P. Allan

The recent discovery of high-temperature superconductivity in single-layer iron selenide has generated significant experimental interest for optimizing the superconducting properties of iron-based superconductors through the lattice…

The microscopic mechanism governing the zero-resistance flow of current in some iron-based, high-temperature superconducting materials is not well understood up to now. A central issue concerning the investigation of these materials is…

Iron-based superconductors are well known for their complex interplay between structure, magnetism and superconductivity. FeSe offers a particularly fascinating example. This material has been intensely discussed because of its extended…

Superconductivity · Physics 2018-01-04 Anna E. Böhmer , Andreas Kreisel

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

The recent discovery of high temperature superconductivity in a layered iron arsenide has led to an intensive search to optimize the superconducting properties of iron-based superconductors by changing the chemical composition of the spacer…

The symmetry and structure of the superconducting gap in the Fe-based superconductors are the central issue for understanding these novel materials. So far the experimental data and theoretical models have been highly controversial. Some…

Superconductivity · Physics 2011-09-13 B. Zeng , G. Mu , H. Q. Luo , T. Xiang , H. Yang , L. Shan , C. Ren , I. I. Mazin , P. C. Dai , H. -H. Wen

FeSe is an iron-based superconductor of immense current interest due to the large enhancements of Tc that occur when it is pressurized or grown as a single layer on an insulating substrate. Here we report precision measurements of its…

Superconductivity · Physics 2016-08-03 Meng Li , N. R. Lee-Hone , Shun Chi , Ruixing Liang , W. N. Hardy , D. A. Bonn , E. Girt , D. M. Broun

Identifying the symmetry of the wave function describing the Cooper pairs is pivotal in understanding the origin of high-temperature superconductivity in iron-based superconductors. Despite nearly a decade of intense investigation, the…

The interplay of orbital and spin degrees of freedom is the fundamental characteristic in numerous condensed matter phenomena, including high temperature superconductivity, quantum spin liquids, and topological semimetals. In iron-based…

In contrast to bulk FeSe superconductor, heavily electron-doped FeSe-derived superconductors show relatively high Tc without hole Fermi surfaces and nodal superconducting gap structure, which pose great challenges on pairing theories in the…

Superconductivity · Physics 2016-02-24 B. Lei , J. H. Cui , Z. J. Xiang , C. Shang , N. Z. Wang , G. J. Ye , X. G. Luo , T. Wu , Z. Sun , X. H. Chen

Specific heat has been measured in FeSe single crystals down to 0.414 K under magnetic fields up to 16 T. A sharp specific heat anomaly at about 8.2 K is observed and is related to the superconducting transition. Another jump of specific…

Superconductivity · Physics 2017-08-30 Guan-Yu Chen , Xiyu Zhu , Huan Yang , Hai-Hu Wen
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