We present results on resistivity (ρ), magnetization (M), thermal conductivity (κ), magnetostriction (L(0)ΔL) and specific heat (Cp) of charge-orbital ordered antiferromagnetic Nd0.8Na0.2MnO3 compound. Magnetic field-induced antiferromagnetic/charge-orbital ordered insulating to ferromagnetic metallic transition leads to giant magnetothermal conductivity and magnetostriction effect. The low-temperature irreversibility behavior in ρ, M, κ and L(0)ΔL due to field cycling together with striking similarity among the field and temperature dependence of these parameters manifest the presence of strong and complex spin-charge-lattice coupling in this compound. The giant magnetothermal conductivity is attributed mainly to the suppression of phonon scattering due to the destabilization of spin fluctuations and static/dynamic Jahn-Teller distortion by the application of magnetic field.
@article{arxiv.1503.06552,
title = {Giant magnetothermal conductivity and magnetostriction effect in charge ordered Nd$_{0.8}$Na$_{0.2}$MnO$_{3}$ compound},
author = {B. Samantaray and N. Khan and A. Midya and P. Mandal and S. Ravi},
journal= {arXiv preprint arXiv:1503.06552},
year = {2016}
}