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Magnetodielectric coupling of infrared phonons in single crystal Cu₂OSeO₃
classification
❄️ cond-mat.mtrl-sci
cond-mat.str-el
keywords
infraredtemperaturebeencrystalfitsfunctionmagnetodielectricoseo
read the original abstract
Reflection and transmission as a function of temperature have been measured on a single crystal of the magnetoelectric ferrimagnetic compound Cu$_{2}$OSeO$_{3}$ utilizing light spanning the far infrared to the visible portions of the electromagnetic spectrum. The complex dielectric function and optical properties were obtained via Kramers-Kronig analysis and by fits to a Drude-Lortentz model. The fits of the infrared phonons show a magnetodielectric effect near the transition temperature ($T_{c}\sim 60$~K). Assignments to strong far infrared phonon modes have been made, especially those exhibiting anomalous behavior around the transition temperature.
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