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The discovery of superconductivity (SC) with a transition temperature, Tc, up to 65K in single-layer FeSe (bulk Tc =8K) films grown on SrTiO3 substrates has attracted special attention to Fe-based thin films. The high Tc is a consequence of…

The discovery of high-temperature (Tc) superconductivity in monolayer FeSe on SrTiO3 raised a fundamental question whether high Tc is commonly realized in monolayer iron-based superconductors. Tetragonal FeS is a key material to resolve…

Iron selenide (FeSe) - the structurally simplest iron-based superconductor, has attracted tremendous interest in the past years. While the transition temperature (Tc) of bulk FeSe is $\sim$ 8 K, it can be significantly enhanced to 40 - 50 K…

We prepared superconducting and non-superconducting FeSe films on SrTiO3(001) substrates (FeSe/STO) and investigated the superconducting transition induced by charge transfer between organic molecules and FeSe layers by low temperature…

Superconductivity · Physics 2017-05-10 Jiaqi Guan , Jian Liu , Bing Liu , Xiaochun Huang , Qing Zhu , Xuetao Zhu , Jiatao Sun , Sheng Meng , Weihua Wang , Jiandong Guo

The layered nature and simple structure of FeSe reveal this iron-based superconductor as a unique building block for the design of artificial heterostructure materials. While superconductivity develops in ultrathin films of FeSe on SrTiO3…

Superconductivity · Physics 2024-11-19 Yongsong Wang , Haojie Guo , Ane Etxebarria , Sandra Sajan , Sara Barja , Miguel M. Ugeda

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…

Superconductivity · Physics 2018-05-16 P. K. Biswas , Z. Salman , Q. Song , R. Peng , J. Zhang , L. Shu , D. L. Feng , T. Prokscha , E. Morenzoni

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…

Interface-enhanced high-temperature superconductivity in one unit-cell (UC) FeSe films on SrTiO3(001) (STO) substrate has recently attracted much attention in condensed matter physics and material science. By combined in-situ scanning…

The interface-enhanced superconductivity in monolayer iron selenide (FeSe) films on SrTiO3 has been actively pursued in the past decade. Although a synergistic effect between interfacial charge transfer and interfacial electron-phonon…

High temperature superconductivity in one unit cell (1 UC) FeSe on SrTiO3 heterostructure has become a research frontier in condensed matter physics and material science. The superconducting transition temperature (Tc) of ultrathin FeSe…

Superconductivity · Physics 2020-03-05 Chaofei Liu , Jian Wang

Single monolayer FeSe film grown on Nb-doped SrTiO$_3$(001) substrate shows the highest superconducting transition temperature (T$_C$ $\sim$ 100 K) among the iron-based superconductors (iron-pnictide), while T$_C$ of bulk FeSe is only…

Superconductivity · Physics 2018-03-07 Y. Zhou , L. Miao , P. Wang , F. F. Zhu , W. X. Jiang , S. W. Jiang , Y. Zhang , H. F. Ding , H. Zheng , J. F. Jia , D. Qian , D. Wu

Epitaxial engineering of solid-state heterointerfaces is a leading avenue to realizing enhanced or novel electronic states of matter. As a recent example, bulk FeSe is an unconventional superconductor with a modest transition temperature…

Superconductivity · Physics 2017-03-29 Dennis Huang , Jennifer E. Hoffman

We report on the emergence of two disconnected superconducting domes in alkali-metal potassium (K)-doped FeSe ultra-thin films grown on graphitized SiC(0001). The superconductivity exhibits hypersensitivity to K dosage in the lower-Tc dome,…

Superconductivity · Physics 2016-04-14 Can-Li Song , Hui-Min Zhang , Yong Zhong , Xiao-Peng Hu , Shuai-Hua Ji , Lili Wang , Ke He , Xu-Cun Ma , Qi-Kun Xue

The mechanism of enhanced superconductivity in the one unit-cell (1UC) FeSe film on a SrTiO3 (STO) substrate has stimulated significant research interest but remains elusive. Using low-temperature, voltage-gated Raman spectroscopy and…

We prepare single layer potassium-doped iron selenide (110) film by molecular beam expitaxy. Such a single layer film can be viewed as a two-dimensional system composed of weakly coupled two-leg iron ladders. Scanning tunneling spectroscopy…

Superconductivity · Physics 2015-06-11 Wei Li , Hao Ding , Pengfei Zhang , Peng Deng , Kai Chang , Ke He , Shuaihua Ji , Lili Wang , Xucun Ma , Jian Wu , Jiang-Ping Hu , Qi-Kun Xue , Xi Chen

Thin films of Fe(1+delta)Se(1-x)Te(x) (delta ~ 0.18 & x ~ 0.5) have been successfully grown on (100) oriented single crystalline SrTiO3 and LaAlO3 substrates by pulsed laser deposition. The crystal structure was characterized by x-ray…

Charge transfer and electron-phonon coupling (EPC) are proposed to be two important constituents associated with enhanced superconductivity in the single unit cell FeSe films on oxide surfaces. Using high-resolution electron energy loss…

We report superconductivity induced in films of the non-superconducting, antiferromagnetic parent material FeTe by low temperature oxygen incorporation in a reversible manner. X-ray absorption shows that oxygen doping changes the nominal Fe…

Superconductivity · Physics 2010-07-26 Yuefeng Nie , Donald Telesca , Joseph I. Budnick , Boris Sinkovic , Barrett O. Wells

The origin of superconductivity in the FeSe monolayer on SrTiO$_3$ remains one of the unresolved mysteries in condensed-matter physics. Here by investigation of the temperature evolution of the dynamic charge response of FeSe/SrTiO$_3$ we…

Superconductivity · Physics 2024-12-09 Khalil Zakeri , Ryan Roemer , Ke Zou

Superconductivity was recently found in the simple tetragonal FeSe structure. Recent studies suggest that FeSe is unconventional, with the symmetry of the superconducting pairing state still under debate. To tackle these problems, clean…

Superconductivity · Physics 2015-05-13 M. J. Wang , J. Y. Luo , T. W. Huang , H. H. Chang , T. K. Chen , F. C. Hsu , C. T Wu , P. M. Wu , A. M. Chang , M. K. Wu