Abstract
The ferromagnetoelectric boracite CO3B7O13Cl has been investigated on (111) cubic cut single crystal platelets in its low temperature monoclinic ferroelectric/ferroelastic/weakly ferromagnetic phase. These platelets were electroded and poled by a thermal process or by the application of a high enough electric field to get a "ferroelectric/ferroelastic nearly single domain" with polarization along the (111)cub direction perpendicular to the platelets. Magnetoelectric measurements were performed on these platelets in the temperature range 1.5-40 K and up to an applied magnetic field of 10 kOe. The induced polarization, at a dc magnetic field of 0.5 kOe, which is proportional to the coefficient of the linear magnetoelectric effect, shows an anomaly at about 11.3 K. With further increase in temperature, a sharp change at nearly 12 K corresponding to the Néel temperature was observed. The coefficient α32 of the linear magnetoelectric effect, measured quasi-statically at 4.2 K, is about 13 ps/m (∼3.9 × 10-3 in Gaussian units). The ferromagnetic domain switching with the angular variation of magnetic field is consistent with the monoclinic Shubnikov point group m. The coercive field as a function of temperature measured magnetoelectrically shows an exponential behaviour.
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Senthil Kumar, M., Rivera, J. P., Ye, Z. G., Gentil, S. D., & Schmid, H. (1997). Magnetoelectric effect in Co-Cl boracite. Ferroelectrics, 204(1–4), 57–71. https://doi.org/10.1080/00150199708222188
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