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Superconducting-Gap Anisotropy of Iron Pnictides Investigated via Combinatorial Microwave Measurements.
Okada, Tatsunori; Imai, Yoshinori; Kitagawa, Kentaro; Matsubayashi, Kazuyuki; Nakajima, Masamichi; Iyo, Akira; Uwatoko, Yoshiya; Eisaki, Hiroshi; Maeda, Atsutaka.
Affiliation
  • Okada T; Department of Basic Science, University of Tokyo, Meguro, Tokyo, 153-8902, Japan. tatsu.okada@imr.tohoku.ac.jp.
  • Imai Y; Institute for Materials Research, Tohoku University, Sendai, Miyagi, 980-8577, Japan. tatsu.okada@imr.tohoku.ac.jp.
  • Kitagawa K; Department of Basic Science, University of Tokyo, Meguro, Tokyo, 153-8902, Japan.
  • Matsubayashi K; Department of Physics, Tohoku University, Sendai, Miyagi, 980-8578, Japan.
  • Nakajima M; Institute for Solid State Physics, University of Tokyo, Kashiwa, Chiba, 277-8581, Japan.
  • Iyo A; Department of Physics, University of Tokyo, Bunkyo, Tokyo, 113-0033, Japan.
  • Uwatoko Y; Institute for Solid State Physics, University of Tokyo, Kashiwa, Chiba, 277-8581, Japan.
  • Eisaki H; Department of Engineering Science, University of Electro-Communications, Chofu, Tokyo, 182-8585, Japan.
  • Maeda A; National Institute of Advanced Industrial Science and Technology, Tsukuba, Ibaraki, 305-8568, Japan.
Sci Rep ; 10(1): 7064, 2020 Apr 27.
Article in En | MEDLINE | ID: mdl-32341365
One of the most significant issues for superconductivity is clarifying the momentum-dependent superconducting gap Δ([Formula: see text]), which is closely related to the pairing mechanism. To elucidate the gap structure, it is essential to investigate Δ([Formula: see text]) in as many different physical quantities as possible and to crosscheck the results obtained in different methods with each other. In this paper, we report a combinatorial investigation of the superfluid density and the flux-flow resistivity of iron-pnictide superconductors; LiFeAs and BaFe2(As1-xPx)2 (x = 0.3, 0.45). We evaluated Δ([Formula: see text]) by fitting these two-independent quantities with a two-band model simultaneously. The obtained Δ([Formula: see text]) are consistent with the results observed in angle-resolved photoemission spectroscopy (ARPES) and scanning-tunneling spectroscopy (STS) studies. We believe our approach is a powerful method for investigating Δ([Formula: see text]) because it does not require a sample with clean surface unlike ARPES and STS experiments, or a rotational magnetic-field system for direct measurements of the angular dependence of thermodynamic quantities.

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Sci Rep Year: 2020 Document type: Article Affiliation country: Japón Country of publication: Reino Unido

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Sci Rep Year: 2020 Document type: Article Affiliation country: Japón Country of publication: Reino Unido