Literature DB >> 27035956

Electric field-induced superconducting transition of insulating FeSe thin film at 35 K.

Kota Hanzawa1, Hikaru Sato1, Hidenori Hiramatsu2, Toshio Kamiya3, Hideo Hosono2.   

Abstract

It is thought that strong electron correlation in an insulating parent phase would enhance a critical temperature (Tc) of superconductivity in a doped phase via enhancement of the binding energy of a Cooper pair as known in high-Tc cuprates. To induce a superconductor transition in an insulating phase, injection of a high density of carriers is needed (e.g., by impurity doping). An electric double-layer transistor (EDLT) with an ionic liquid gate insulator enables such a field-induced transition to be investigated and is expected to result in a high Tc because it is free from deterioration in structure and carrier transport that are in general caused by conventional carrier doping (e.g., chemical substitution). Here, for insulating epitaxial thin films (∼10 nm thick) of FeSe, we report a high Tc of 35 K, which is 4× higher than that of bulk FeSe, using an EDLT under application of a gate bias of +5.5 V. Hall effect measurements under the gate bias suggest that highly accumulated electron carrier in the channel, whose area density is estimated to be 1.4 × 10(15) cm(-2) (the average volume density of 1.7 × 10(21) cm(-3)), is the origin of the high-Tc superconductivity. This result demonstrates that EDLTs are useful tools to explore the ultimate Tc for insulating parent materials.

Entities:  

Keywords:  electric double-layer transistor; high-density carrier accumulation; iron-based superconductors

Year:  2016        PMID: 27035956      PMCID: PMC4839426          DOI: 10.1073/pnas.1520810113

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  15 in total

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2.  Iron-based layered superconductor La[O(1-x)F(x)]FeAs (x = 0.05-0.12) with T(c) = 26 K.

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Authors:  J Engelmann; V Grinenko; P Chekhonin; W Skrotzki; D V Efremov; S Oswald; K Iida; R Hühne; J Hänisch; M Hoffmann; F Kurth; L Schultz; B Holzapfel
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4.  Electric-field-induced superconductivity in an insulator.

Authors:  K Ueno; S Nakamura; H Shimotani; A Ohtomo; N Kimura; T Nojima; H Aoki; Y Iwasa; M Kawasaki
Journal:  Nat Mater       Date:  2008-10-12       Impact factor: 43.841

5.  Crystal orientation and thickness dependence of the superconducting transition temperature of tetragonal FeSe1-x thin films.

Authors:  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
Journal:  Phys Rev Lett       Date:  2009-09-10       Impact factor: 9.161

6.  Atomic Control of the SrTiO3 Crystal Surface.

Authors:  M Kawasaki; K Takahashi; T Maeda; R Tsuchiya; M Shinohara; O Ishiyama; T Yonezawa; M Yoshimoto; H Koinuma
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7.  Collective bulk carrier delocalization driven by electrostatic surface charge accumulation.

Authors:  M Nakano; K Shibuya; D Okuyama; T Hatano; S Ono; M Kawasaki; Y Iwasa; Y Tokura
Journal:  Nature       Date:  2012-07-25       Impact factor: 49.962

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Authors:  Matthew Burrard-Lucas; David G Free; Stefan J Sedlmaier; Jack D Wright; Simon J Cassidy; Yoshiaki Hara; Alex J Corkett; Tom Lancaster; Peter J Baker; Stephen J Blundell; Simon J Clarke
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Authors:  Takayoshi Katase; Hidenori Hiramatsu; Toshio Kamiya; Hideo Hosono
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10.  Electronic and magnetic phase diagram of beta-Fe(1.01)Se with superconductivity at 36.7 K under pressure.

Authors:  S Medvedev; T M McQueen; I A Troyan; T Palasyuk; M I Eremets; R J Cava; S Naghavi; F Casper; V Ksenofontov; G Wortmann; C Felser
Journal:  Nat Mater       Date:  2009-06-14       Impact factor: 43.841

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2.  Superconductivity across Lifshitz transition and anomalous insulating state in surface K-dosed (Li0.8Fe0.2OH)FeSe.

Authors:  Mingqiang Ren; Yajun Yan; Xiaohai Niu; Ran Tao; Die Hu; Rui Peng; Binping Xie; Jun Zhao; Tong Zhang; Dong-Lai Feng
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3.  ON the Nature of Ionic Liquid Gating of La2-xSrxCuO₄.

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4.  Evidence of cooperative effect on the enhanced superconducting transition temperature at the FeSe/SrTiO3 interface.

Authors:  Q Song; T L Yu; X Lou; B P Xie; H C Xu; C H P Wen; Q Yao; S Y Zhang; X T Zhu; J D Guo; R Peng; D L Feng
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5.  Giant thermoelectric power factor in ultrathin FeSe superconductor.

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Journal:  Nat Commun       Date:  2019-02-18       Impact factor: 14.919

6.  Effects of Te- and Fe-doping on the superconducting properties in FeySe1-xTex thin films.

Authors:  Yalin Zhang; Tong Wang; Zhihe Wang; Zhongwen Xing
Journal:  Sci Rep       Date:  2022-01-10       Impact factor: 4.996

7.  Superconductivity at 38 K at an electrochemical interface between an ionic liquid and FeSe0.8Te0.2 on various substrates.

Authors:  Shunsuke Kouno; Yohei Sato; Yumiko Katayama; Ataru Ichinose; Daisuke Asami; Fuyuki Nabeshima; Yoshinori Imai; Atsutaka Maeda; Kazunori Ueno
Journal:  Sci Rep       Date:  2018-10-03       Impact factor: 4.379

  7 in total

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