English

Short-range magnetic correlation and magnetodielectric coupling in multiferroic Pb3TeMn3P2O14

Materials Science 2021-07-01 v1

Abstract

In this paper the structural, magnetic, and dielectric properties of langasite compound Pb3_3TeMn3_3P2_2O14_{14} have been investigated as a candidate of short-range magnetic correlations driven development of dielectric anomaly above Neˊ\acute{e}el temperature of (TNT_N=) 7 K. Presence of dielectric anomaly, structural phase transition and a short range magnetic correlation at the same temperature (at around 100 K) as well as magnetic field dependent capacitance clearly indicate that this compound shows magnetodielectric coupling at around 100 K. In addition, unusual behaviour is observed in two polarization loop at room temperature and liquid nitrogen temperature, where coercive field at liquid nitrogen temperature is larger than room temperature. Further, PP-EE loop at liquid nitrogen temperature with different frequencies also affirm that the coercive field and remnant polarization are firstly reduced (but very small value) but when frequency is further increased to 15 Hz and 100 Hz, both of them are enhanced. Therefore, a transition is observed at around 15 Hz in frequency dependent PrP_r and ECE_C curve, which may be usually attributed to the generalized pinning and depinning of the dislocation arrays to polarization.

Keywords

Cite

@article{arxiv.2106.15938,
  title  = {Short-range magnetic correlation and magnetodielectric coupling in multiferroic Pb3TeMn3P2O14},
  author = {Rafikul Ali Saha and Desheng Fu and Mitsuru Itoh and Sugata Ray},
  journal= {arXiv preprint arXiv:2106.15938},
  year   = {2021}
}