English

Magnetic structure of the magnetoelectric material Ba$_2$MnGe$_2$O$_7$

Strongly Correlated Electrons 2023-03-07 v1

Abstract

A detailed investigation of Ba2_2MnGe2_2O7_7 was performed in its low-temperature magnetoelectric state combining neutron diffraction with magnetization measurements on single crystals. In the paramagnetic state at 10 K, polarized neutron diffraction was applied to reveal the components of the susceptibility tensor. The crystal and magnetic structures below the antiferromagnetic transition temperature of TN4T_N \approx 4 K were determined using unpolarized neutron diffraction. This data implies no structural phase transition from 10 K down to 2.5 K and is well described within the tetragonal space group P4ˉ21mP\bar{4}2_1m. We found that in zero magnetic field the magnetic space group is either Ccmc21C_cmc2_1 or Pc212121P_c2_12_12_1 with antiferromagnetic order along the [110] or [100] directions, respectively, while neighboring spins along the [001] axis are ordered antiferromagnetically. A non-collinear spin arrangement due to small canting within the abab plane is allowed by symmetry and observed experimentally. The ordered moment is found to be 3.24(3) μB\mu_B/Mn2+^{2+} at 2.5 K and the temperature-field dependent magnetic phase diagram is mapped out by macroscopic magnetization. Distinct differences between the magnetic structure of Ba2_2MnGe2_2O7_7 as compared to those of Ba2_2CoGe2_2O7_7 and Ca2_2CoSi2_2O7_7 are discussed.

Keywords

Cite

@article{arxiv.2303.02736,
  title  = {Magnetic structure of the magnetoelectric material Ba$_2$MnGe$_2$O$_7$},
  author = {A. Sazonov and H. Thoma and R. Dutta and M. Meven and A. Gukasov and R. Fittipaldi and V. Granata and T. Masuda and B. Náfrádi and V. Hutanu},
  journal= {arXiv preprint arXiv:2303.02736},
  year   = {2023}
}