We study the magnetoelectric coupling in YMnO3 single crystal, in which a part of Mn3+ ions is substituted by nonmagnetic Ga3+ ions. While the antiferromagnetic ordering temperature is gradually suppressed by Ga doping, the magnetocapacitance is enhanced by two orders of magnitude, which we attribute to the lifting of frustration of interlayer spin interactions in doped samples. We also find that the dielectric constant anomaly below magnetic ordering temperature is strongly anisotropic, which we explain using a phenomenological Landau description of ferroelectric antiferromagnets.
Understanding the ferroelectrocity in magnetic ferroelectric oxides is of both fundamental and techn...
Understanding the ferroelectrocity in magnetic ferroelectric oxides is of both fundamental and techn...
Understanding the ferroelectrocity in magnetic ferroelectric oxides is of both fundamental and techn...
We study the magnetoelectric coupling in YMnO3 single crystal, in which a part of Mn3+ ions is subst...
We study the magnetoelectric coupling in YMnO3 single crystal, in which a part of Mn3+ ions is subst...
We study the magnetoelectric coupling in YMnO3 single crystal, in which a part of Mn3+ ions is subst...
We study the magnetoelectric coupling in YMnO3 single crystal, in which a part of Mn3+ ions is subst...
Hexagonal RMnO3 is a multiferroic compound with a giant spin-lattice coupling at an antiferromagneti...
We observe a seemingly complex magnetic field dependence of the dielectric constant of hexagonal YbM...
We observe a seemingly complex magnetic field dependence of the dielectric constant of hexagonal YbM...
We observe a seemingly complex magnetic field dependence of the dielectric constant of hexagonal YbM...
We have studied the effects of substitution of Mn3+ by Ga3+ on the crystal structure of YMnO3. Y(Mn,...
Multiferroic hexagonal manganites RMnO3 have a very high ferroelectric transition temperature around...
Understanding the ferroelectrocity in magnetic ferroelectric oxides is of both fundamental and techn...
Understanding the ferroelectrocity in magnetic ferroelectric oxides is of both fundamental and techn...
Understanding the ferroelectrocity in magnetic ferroelectric oxides is of both fundamental and techn...
Understanding the ferroelectrocity in magnetic ferroelectric oxides is of both fundamental and techn...
Understanding the ferroelectrocity in magnetic ferroelectric oxides is of both fundamental and techn...
We study the magnetoelectric coupling in YMnO3 single crystal, in which a part of Mn3+ ions is subst...
We study the magnetoelectric coupling in YMnO3 single crystal, in which a part of Mn3+ ions is subst...
We study the magnetoelectric coupling in YMnO3 single crystal, in which a part of Mn3+ ions is subst...
We study the magnetoelectric coupling in YMnO3 single crystal, in which a part of Mn3+ ions is subst...
Hexagonal RMnO3 is a multiferroic compound with a giant spin-lattice coupling at an antiferromagneti...
We observe a seemingly complex magnetic field dependence of the dielectric constant of hexagonal YbM...
We observe a seemingly complex magnetic field dependence of the dielectric constant of hexagonal YbM...
We observe a seemingly complex magnetic field dependence of the dielectric constant of hexagonal YbM...
We have studied the effects of substitution of Mn3+ by Ga3+ on the crystal structure of YMnO3. Y(Mn,...
Multiferroic hexagonal manganites RMnO3 have a very high ferroelectric transition temperature around...
Understanding the ferroelectrocity in magnetic ferroelectric oxides is of both fundamental and techn...
Understanding the ferroelectrocity in magnetic ferroelectric oxides is of both fundamental and techn...
Understanding the ferroelectrocity in magnetic ferroelectric oxides is of both fundamental and techn...
Understanding the ferroelectrocity in magnetic ferroelectric oxides is of both fundamental and techn...
Understanding the ferroelectrocity in magnetic ferroelectric oxides is of both fundamental and techn...