Flux free growth of superconducting FeSe single crystals

被引:10
|
作者
Maheshwari, P. K. [1 ,2 ]
Joshi, L. M. [1 ,2 ]
Gahtori, Bhasker [1 ]
Srivastava, A. K. [1 ]
Gupta, Anurag [1 ]
Patnaik, S. P. [3 ]
Awana, V. P. S. [1 ]
机构
[1] CSIR Natl Phys Lab, Dr KS Krishnan Marg, New Delhi 110012, India
[2] AcSIR Acad Sci & Innovat Res NPL, New Delhi 110012, India
[3] Jawaharlal Nehru Univ, Sch Phys Sci, New Delhi 110067, India
来源
MATERIALS RESEARCH EXPRESS | 2016年 / 3卷 / 07期
关键词
iron based superconductors; FeSe crystal growth; micro-structural details; electrical; and magnetic characterization; PHASE-DIAGRAM;
D O I
10.1088/2053-1591/3/7/076002
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We report flux free growth of superconducting FeSe single crystals by an easy and versatile high temperature melt and slow cooling method for first time. The room temperature x-ray diffraction (XRD) on the surface of the piece of such obtained crystals showed single [101] plane of beta-FeSe tetragonal phase. The bulk powder XRD, being obtained by crushing the part of crystal chunk showed majority (similar to 87%) beta-FeSe tetragonal (space group P4/nmm) and minority (similar to 13%) delta-FeSe hexagonal (space group P6(3)/mmc) crystalline phases. Detailed high resolution transmission electron microscope images along with selected area electron diffraction showed the abundance of both majority beta-FeSe and minority delta-FeSe phases. Both transport (rho-T) and magnetization exhibited superconductivity at below around 10 K. Interestingly, the magnetization signal of these crystals is dominated by the magnetism of minority delta-FeSe magnetic phase, and hence the isothermal magnetization at 4 K was seen to be ferromagnetic like. Transport (rho-T) measurements under magnetic field showed superconductivity onset at below 12 K, and rho = 0 (T-c) at 9 K. Superconducting transition temperature (T-c) decreases with applied field to around 6 Kat 7 T, with dT(c)/dH of similar to 0.4 KT-1, giving rise to an H-c2(0) value of around 50, 30 and 20 T for normal resistivity rho(n) = 90%, 50% and 10% respectively, which are calculated from conventional one band Werthamer-Helfand-Hohenberg equation. FeSe single crystal activation energy is calculated from thermally activated flux flow model which is found to decreases with field from 12.1 meV for 0.2 T to 3.77 meV for 7T.
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页数:9
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