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Using angle-resolved photoemission spectroscopy (ARPES), we revealed the surface electronic structure and superconducting gap of (Li$_{0.8}$Fe$_{0.2}$)OHFeSe, an intercalated FeSe-derived superconductor without antiferromagnetic phase or…

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…

超导电性 · 物理学 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

Single-layer FeSe film on SrTiO3(001) was recently found to be the champion of interfacial superconducting systems, with a much enhanced superconductivity than the bulk iron-based superconductors. Its superconducting mechanism is of great…

超导电性 · 物理学 2016-02-09 Q. Fan , W. H. Zhang , X. Liu , Y. J. Yan , M. Q. Ren , R. Peng , H. C. Xu , B. P. Xie , J. P. Hu , T. Zhang , D. L. Feng

The intercalated iron selenide (Li,Fe)OHFeSe has a strongly layered structure analogous to the quasi two-dimensional (2D) bismuth cuprate superconductors, and exhibits both high-temperature (Tc) and topological superconductivity. However,…

Exploration of new superconductors has always been one of the research directions in condensed matter physics. We report here a new layered heterostructure of [(Fe,Al)(OH)2][FeSe]1.2, which is synthesized by the hydrothermal ion-exchange…

The electronic structure and magnetism of a new magnetic intercalation compound (Li0.8Fe0.2)OHFeSe are investigated theoretically. The electronic structure calculations predict that the Fe in the (Li,Fe)OH intercalated layer is in +2…

强关联电子 · 物理学 2017-02-14 Da-Yong Liu , Zhe Sun , Liang-Jian Zou

The mechanism of high temperature superconductivity in the iron-based superconductors remains an outstanding issue in condensed matter physics. The electronic structure, in particular the Fermi surface topology, is considered to play an…

Previous experimental results have shown important differences between iron selenide and arsenide superconductors, which seem to suggest that the high temperature superconductivity in these two subgroups of iron-based family may arise from…

We have performed an angle-resolved photoemission spectroscopy study of the new iron-based superconductor K0.8Fe1.7Se2 (Tc ~ 30 K). Clear band dispersion is observed with the overall bandwidth renormalized by a factor of 2.5 compared to our…

超导电性 · 物理学 2011-05-05 T. Qian , X. -P. Wang , W. -C. Jin , P. Zhang , P. Richard , G. Xu , X. Dai , Z. Fang , J. -G. Guo , X. -L. Chen , H. Ding

We carried out high resolution angle-resolved photoemission measurements on the electronic structure and superconducting gap of K_0.68Fe_1.79Se_2 (T_c=32 K) and (Tl_0.45K_0.34)Fe_1.84Se_2 (T_c=28 K) superconductors. In addition to the…

We report measurements of the London penetration depth [$\Delta\lambda(T)$] of the recently discovered iron-based superconductor (Li$_{1-x}$Fe$_x$)OHFeSe, in order to characterize the nature of the superconducting gap structure. At low…

超导电性 · 物理学 2017-07-07 M. Smidman , G. M. Pang , H. X. Zhou , N. Z. Wang , W. Xie , Z. F. Weng , Y. Chen , X. L. Dong , X. H. Chen , Z. X. Zhao , H. Q. Yuan

The recently discovered (Li$_{0.8}$Fe$_{0.2}$)OHFeSe superconductor provides a new platform for exploiting the microscopic mechanisms of high-$T_c$ superconductivity in FeSe-derived systems. Using density functional theory calculations, we…

超导电性 · 物理学 2016-02-26 Wei Chen , Changgan Zeng , Efthimios Kaxiras , Zhenyu Zhang

The low energy band structure and Fermi surface of the newly discovered superconductor, AxFe2Se2 (A=K,Cs), have been studied by angle-resolved photoemission spectroscopy. Compared with iron pnictide superconductors, AxFe2Se2 (A=K,Cs) is the…

超导电性 · 物理学 2011-04-15 Y. Zhang , L. X. Yang , M. Xu , Z. R. Ye , F. Chen , C. He , J. Jiang , B. P. Xie , J. J. Ying , X. F. Wang , X. H. Chen , J. P. Hu , D. L. Feng

Superconductivity originates from pairing of electrons. Pairing channel on Fermi surface and pairing glue are thus two pivotal issues for understanding a superconductor. Recently, high-temperature superconductivity over 40 K was found in…

超导电性 · 物理学 2015-12-09 Z. R. Ye , C. F. Zhang , H. L. Ning , W. Li , L. Chen , T. Jia , M. Hashimoto , D. H. Lu , Z. -X. Shen , Y. Zhang

High resolution angle-resolved photoemission measurements have been carried out to study the electronic structure and superconducting gap of the (Tl$_{0.58}$Rb$_{0.42}$)Fe$_{1.72}$Se$_2$ superconductor with a T$_c$=32 K. The Fermi surface…

In the iron-based superconductors, understanding the relation between superconductivity and electronic structure upon doping is crucial for exploring the pairing mechanism. Recently it was found that in iron selenide (FeSe), enhanced…

超导电性 · 物理学 2017-08-21 M. Q. Ren , Y. J. Yan , X. H. Niu , R. Tao , D. Hu , R. Peng , B. P. Xie , J. Zhao , T. Zhang , D. L. Feng

In the iron based superconductors, one of the on-going frontier studies is about the pairing mechanism. The recent interest concerns the high temperature superconductivity and its intimate reason in the monolayer FeSe thin films. The…

超导电性 · 物理学 2016-02-02 Zengyi Du , Xiong Yang , Hai Lin , Delong Fang , Guan Du , Jie Xing , Huan Yang , Xiyu Zhu , Hai-Hu Wen

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 superconducting film of (Li1-xFex)OHFeSe is reported for the first time. The thin film exhibits a small in-plane crystal mosaic of 0.22 deg, in terms of the FWHM (full-width-at-half-maximum) of x-ray rocking curve, and an excellent…

Bulk FeSe is superconducting with a critical temperature $T_c$ $\cong$ 8 K and SrTiO$_3$ is insulating in nature, yet high-temperature superconductivity has been reported at the interface between a single-layer FeSe and SrTiO$_3$. Angle…

超导电性 · 物理学 2018-05-16 P. K. Biswas , Z. Salman , Q. Song , R. Peng , J. Zhang , L. Shu , D. L. Feng , T. Prokscha , E. Morenzoni
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