Heat Capacity and Magnetic Phase Diagram of the Low-Dimensional Antiferromagnet YBaCuO
arXiv:0801.4318 · doi:10.1088/0953-8984/20/33/335208
Abstract
A study by specific heat of a polycrystalline sample of the low-dimensional magnetic system YBaCuO is presented. Magnetic fields up to 14 T are applied and permit to extract the (,) phase diagram. Below T, the Néel temperature, associated with a three-dimensional antiferromagnetic long-range ordering, is constant and equals K. Above , increases linearly with and a field-induced increase of the entropy at is related to the presence of an isosbestic point at K, where all the specific heat curves cross. A comparison is made between YBaCuO and the quasi-two-dimensional magnetic systems BaNiVO, SrCuOCl, and PrCuO, for which very similar phase diagrams have been reported. An effective field-induced magnetic anisotropy is proposed to explain these phase diagrams.
14 pages, 7 figures
References in corpus (5)
- Quantum Monte Carlo study of S=1/2 weakly-anisotropic antiferromagnets on the square lattice
- Saddle-point van Hove singularity and the phase diagram of high-Tc cuprates
- Importance of In-Plane Anisotropy in the Quasi Two-Dimensional Antiferromagnet BaNiVO
- R-M interactions in R2BaMO5 (R=Y or Gd and M=Cu or Zn)
- Thermal expansion of the quasi two-dimensional magnetic layered compound BaNiVO under magnetic fields along c-axis