Nonlinear magnetoelectric effect in paraelectric state of Co4Nb2O9 single crystal

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作者
Yiming Cao
Guochu Deng
Přemysl Beran
Zhenjie Feng
Baojuan Kang
Jincang Zhang
Nicolas Guiblin
Brahim Dkhil
Wei Ren
Shixun Cao
机构
[1] Department of Physics,
[2] International Center of Quantum and Molecular Structures,undefined
[3] and Materials Genome Institute,undefined
[4] Shanghai University,undefined
[5] Center for Magnetic Materials and Devices,undefined
[6] Key Laboratory for Advanced Functional and Low Dimensional Materials of Yunnan Higher Education Institute,undefined
[7] Qujing Normal University,undefined
[8] Laboratoire Structures,undefined
[9] Propriétés et Modélisation des Solides,undefined
[10] CentraleSupélec,undefined
[11] CNRS-UMR 8580,undefined
[12] Université Paris-Saclay,undefined
[13] Australian Nuclear Science and Technology Organisation,undefined
[14] New Illawarra Road,undefined
[15] Nuclear Physics Institute CAS,undefined
[16] Shanghai Key Laboratory of High Temperature Superconductors,undefined
[17] Shanghai University,undefined
来源
Scientific Reports | / 7卷
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摘要
We report the structural, magnetoelectric (ME), magnetic and electric control of magnetic properties in Co4Nb2O9 (CNO) single crystal. A detailed ME measurement reveals a nonlinear ME effect instead of a linear ME effect in CNO single crystal. By fitting the magnetization-electric field (M-E) curve, it can be found that the linear (αe\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$${\alpha }_{e}$$\end{document}) and quadratic (γ) coefficients equal to ~8.27 ps/m and ~−6.46 ps/MV for upper branch, as well as ~8.38 ps/m and ~6.75 ps/MV for the lower branch. More importantly, a pronounced response was observed under a small cooling magnetic field, which cannot even cause the spin flop. This suggests a magnetoelectric effect can occur at paraelectric state for CNO single crystal. Furthermore, we also found that the magnetization of every axis responds to electric field applied along a-axis, but fails to do so when the electric field is applied c-axis. Such findings supply a direct evidence to the magnetic structure and ME coupling mechanism indirectly reflected by our neutron experiment.
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