55Mn and 27Al NMR investigation of YMn4Al8 single crystals
POSTER
Abstract
55Mn and 27Al Nuclear magnetic resonance (NMR) measurements are performed on a single crystal of YMn4Al8 at 8 T down to 4 K. The NMR spectrum, Knight shift, linewidth, spin–lattice relaxation rate 1/T1, and spin–spin relaxation rate 1/T2 are measured as a function of temperature for the c-axis parallel and perpendicular to the magnetic field. The 55Mn NMR spectrum exhibits five broad satellites due to nuclear quadrupole interaction for a nuclear spin of I = 5/2. The 27Al NMR spectrum exhibits two different sites, Al-A and Al-B, with five satellites for each site due to nuclear quadrupole interaction for I = 5/2. Based on the broader linewidths of the Al-B spectra, the Al-B site turns out to be closer to the Mn 3d electrons. The local electronic structures at the Mn and Al sites measured by NMR are almost isotropic for the c-axis parallel and perpendicular to the magnetic field. The temperature dependence of the Knight shifts and the Korringa product 1/T1T, as well as the magnetic susceptibility, show a large decrease at low temperature, indicating the opening of a pseudo-gap in YMn4Al8. The Knight shift scales with the susceptibility, from which the hyperfine coupling constant is extracted and found to be 55A = −140 kOe/μB.
Presenters
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Moohee Lee
KonKuk Univ.
Authors
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Moohee Lee
KonKuk Univ.
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Kihyeok Kang
KonKuk Univ.
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Beongki Cho
Material Science and Engineering, Gwangju Institution of Science and Technology, Department of Materials Science and Engineering, Gwangju Institute of Science and Technology, Gwangju Institute of Science and Technology, Gwangju Inst of Sci & Tech.