| Literature DB >> 28004768 |
Kensuke Kobayashi1, Jun-Ichi Yamaura2, Soshi Iimura3, Sachiko Maki2, Hajime Sagayama1, Reiji Kumai1,4, Youichi Murakami1,4, Hiroki Takahashi5, Satoru Matsuishi2, Hideo Hosono2,3.
Abstract
A systematic study of the crystal structure of a layered iron oxypnictide LaFeAsO1-xHx as a function of pressure was performed using synchrotron X-ray diffraction. This compound exhibits a unique phase diagram of two superconducting phases and two parent phases. We established that the As-Fe-As angle of the FeAs4 tetrahedron widens on the application of pressure due to the interspace between the layers being nearly infilled by the large La and As atoms. Such rarely observed behaviour in iron pnictides implies that the FeAs4 coordination deviates from the regular tetrahedron in the present systems. This breaks a widely accepted structural guide that the superconductivity favours the regular tetrahedron, albeit the superconducting transition temperature (Tc) increases from 18 K at ambient pressure to 52 K at 6 GPa for x = 0.2. In the phase diagram, the second parent phase at x ~ 0.5 is suppressed by pressure as low as ~1.5 GPa in contrast to the first parent phase at x ~ 0, which is robust against pressure. We suggest that certain spin-fluctuation from the second parent phase is strongly related to high-Tc under pressure.Entities:
Year: 2016 PMID: 28004768 PMCID: PMC5177881 DOI: 10.1038/srep39646
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Crystal structure and lattice constants of LaFeAsO1−H.
(a) Crystal structure of LaFeAsO1−H. (b) Lattice constants as a function of pressure for x = 0, 0.2, and 0.51. The error bars represent the uncertainty in the least-squares fitting of the whole patterns in (b).
Figure 2Pressure dependence of structural parameters for LaFeAsO1−H.
(a) Fe–As bond length (dFe-As). (b) As–Fe–As bond angle (αAs-Fe-As). (c) As height (hAs). (d) La–As distance (dLa-As). The inset in (a) describes the FeAs4 tetrahedron with the geometrical parameters. The marks are represented for x = 0 (red circles), 0.20 (green triangles), and 0.51 (blue squares). Almost all error bars are less than the size of the marks. (e) Modification of FeAs4 from ambient pressure (0 GPa) to 7.7 GPa for x = 0.20. The error bars represent the uncertainty in the least-squares fitting of the whole patterns in (a–d).
Figure 3Contour plots of Tc for LaFeAsO1−H as a function of the As–Fe–As bond angle (αAs-Fe-As) and the Fe–As distance (dFe-As).
Broken lines represent the regular tetrahedron and the As height (hAs) = 1.38 Å in FeAs4.
Figure 4Full width at half maximum (FWHM) and electronic and structural phase diagram for LaFeAsO1−H.
(a) The FWHM of the 220 reflection at several pressures for x = 0.51 estimated by the single quasi-Voigt function. The arrows indicate the T–O structural transitions of TS2. The solid lines are guides to the eyes. Inset shows TS2 as a function of pressure. (b) The T vs x phase diagram of the parent phases (PP) with structural (TS) and magnetic (TN) transitions, and superconducting phases (SC) at 0 and 6 GPa. The PP1 and SC at 6 GPa are blue and red, respectively. The error bars represent the uncertainty in the least-squares fitting of the peaks in (a).