Comparative study of terbium tellurides Tb2Te5 and TbTe3
arXiv:2509.08319 · doi:10.1103/rm6p-8hzd
Abstract
Two terbium tellurides, TbTe3 and Tb2Te5, were studied by means of thermodynamics, ultrafast pump-probe spectroscopy and torque magnetometry. While crystal structure and some physical properties of TbTe3 were established previously, the crystal structure of Tb2Te5 was solved only in this work in the orthorhombic space group Cmcm with the parameters of unit cell a = 4.3120(5), b = 41.0305(76) and c = 4.2979(8) Å. In contrast to TbTe3, which experiences three successive magnetic phase transitions, Tb2Te5 orders antiferromagnetically in two steps at TN1 = 9.0 K and TN2 = 6.8 K, both readily suppressed by an external magnetic field. The third transition in TbTe3 is due to the interaction of the magnetic subsystem with the charge density waves. The interaction of magnetic and electronic subsystems in Tb2Te5 has been revealed by the pump probe. Torque measurements of TbTe3 show that the magnetic moments of Tb are oriented predominantly in the ac plane at high temperatures and switch to the b axis at low temperatures. In Tb2Te5, the magnetic moments of Tb are oriented predominantly in the ac plane at low temperatures.
References in corpus (7)
- Single-particle and collective mode couplings associated with 1- and 2-directional electronic ordering in metallic RTe (R = Ho, Dy, Tb)
- Pressure dependence of the charge-density-wave and superconducting states in GdTe, TbTe and DyTe
- Magnetic properties of the charge density wave compounds RTe3, R=Y, La, Ce, Pr, Nd, Sm, Gd, Tb, Dy, Ho, Er & Tm
- Magnetization and specific heat of TbFe3(BO3)4: Experiment and crystal field calculations
- Charge density wave formation in Te (=Nd, Sm and Gd)
- Strongly coupled charge, orbital and spin order in TbTe
- Physical properties of the layered -electron van der Waals magnet CeTe