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Large magnetocapacitance in electronic ferroelectric manganite systems

Strongly Correlated Electrons 2013-11-22 v1 Materials Science

Abstract

We have observed a sizable positive magnetocapacitance (\sim590%5-90\%) in perovskite Pr0.55_{0.55}Ca0.45_{0.45}MnO3_3 and bilayer Pr(Sr0.1_{0.1}Ca0.9_{0.9})2_2Mn2_2O7_7 system under 5T magnetic field across 20-100 K below the magnetic transition point TN_N. The magnetodielectric effect, on the other hand, exhibits a crossover: (a) from positive to negative for the perovskite system and (b) from negative to positive for the bilayer system over the same temperature range. The bilayer Pr(Sr0.1_{0.1}Ca0.9_{0.9})2_2Mn2_2O7_7 system exhibits a sizable anisotropy as well. We have also noticed the influence of magnetic field on the dielectric relaxation characteristics of these systems. These systems belong to a class of improper ferroelectrics and are expected to exhibit charge/orbital order driven ferroelectric polarization below the transition point TCO_{CO}. Large magnetocapacitance in these systems shows typical multiferroic behavior even though the ferroelectric polarization is small in comparison to that of other ferroelectrics.

Keywords

Cite

@article{arxiv.1311.0673,
  title  = {Large magnetocapacitance in electronic ferroelectric manganite systems},
  author = {Ujjal Chowdhury and Sudipta Goswami and Dipten Bhattacharya and Arindam Midya and P. Mandal and P. Das and Y. M. Mukovskii},
  journal= {arXiv preprint arXiv:1311.0673},
  year   = {2013}
}

Comments

6 pages with 5 embedded figures; accepted for publication in J. Appl. Phys

R2 v1 2026-06-22T02:00:23.611Z