We studied the novel multiferroic material Sr2FeSi2O7 and found three absorption modes above the magnetic ordering transition temperature using time-domain terahertz spectroscopy. These absorption modes can be explained as the optical transitions between the spin-orbit coupling and crystal-field split 3d(6) Fe2+ ground-state term in this material. Consideration of the compressed tetrahedral environment of the Fe2+ site is crucial to understand the excitations. We point out, however, discrepancies between the single-site atomic picture and the experimental results.1133Ysciescopu
The field of low-dimensional magnetism is one of the most active research areas in condensed matter ...
Copyright © 2014 American Physical SocietyUsing the examples of laser-induced spin-reorientation pha...
Recent experiments have demonstrated that light can induce a transition from the quantum paraelectri...
© 2017, Pleiades Publishing, Inc. A mechanism underlying the magnetoelectric effect is discussed. Th...
Exotic spin-multipolar ordering in spin transition metal insulators has so far eluded unambiguous ex...
We measured absorption of THz radiation in YFeO3 single crystals at a temperature of 3 K in the magn...
The significance of spin-lattice coupling in the phase diagram of the quantum spin-icepyrochlore Tb2...
© 2020 American Physical Society. We report on the low-frequency optical excitations in the multifer...
The term multiferroics mostly refers to materials exhibiting concomitant ferroelectric and magnetic ...
We report a combined polarized and unpolarized neutron diffraction study on a multiferroic Sr2CoSi2O...
Open Access funding enabled and organized by Projekt DEAL.Magnonic devices operating at terahertz fr...
The emergence of collective order in matter is among the most fundamental and intriguing phenomena i...
Strong spin–orbit coupling (SOC) in Sr2FeHfO6 (SFHO) alloy has been predicted by means of full-poten...
This article was published in the Journal of Physics C: Solid State Physics [© 1978 Journal of Physi...
Recent experiments have demonstrated that light can induce a transition from the quantum paraelectri...
The field of low-dimensional magnetism is one of the most active research areas in condensed matter ...
Copyright © 2014 American Physical SocietyUsing the examples of laser-induced spin-reorientation pha...
Recent experiments have demonstrated that light can induce a transition from the quantum paraelectri...
© 2017, Pleiades Publishing, Inc. A mechanism underlying the magnetoelectric effect is discussed. Th...
Exotic spin-multipolar ordering in spin transition metal insulators has so far eluded unambiguous ex...
We measured absorption of THz radiation in YFeO3 single crystals at a temperature of 3 K in the magn...
The significance of spin-lattice coupling in the phase diagram of the quantum spin-icepyrochlore Tb2...
© 2020 American Physical Society. We report on the low-frequency optical excitations in the multifer...
The term multiferroics mostly refers to materials exhibiting concomitant ferroelectric and magnetic ...
We report a combined polarized and unpolarized neutron diffraction study on a multiferroic Sr2CoSi2O...
Open Access funding enabled and organized by Projekt DEAL.Magnonic devices operating at terahertz fr...
The emergence of collective order in matter is among the most fundamental and intriguing phenomena i...
Strong spin–orbit coupling (SOC) in Sr2FeHfO6 (SFHO) alloy has been predicted by means of full-poten...
This article was published in the Journal of Physics C: Solid State Physics [© 1978 Journal of Physi...
Recent experiments have demonstrated that light can induce a transition from the quantum paraelectri...
The field of low-dimensional magnetism is one of the most active research areas in condensed matter ...
Copyright © 2014 American Physical SocietyUsing the examples of laser-induced spin-reorientation pha...
Recent experiments have demonstrated that light can induce a transition from the quantum paraelectri...