Abstract:
We investigate low-temperature magnetization processes for two frustrated quantum Heisenberg antiferromagnets using the lattice gas model. The emerging discrete degrees of freedom indicate a close relation of the frustrated quantum Heisenberg antiferromagnet to the classical lattice gas with a finite nearest-neighbor repulsion or, equivalently, to the Ising antiferromagnet in a uniform magnetic field. Using this relation, we obtain analytic results for thermodynamically large systems in the one-dimensional case. In the two-dimensional case, we simulate systems of the size up to 100×100 sites using the classical Monte Carlo method.
Citation:
O. V. Derzhko, T. E. Krokhmalskii, J. Richter, “Quantum Heisenberg antiferromagnet on low-dimensional frustrated lattices”, TMF, 168:3 (2011), 441–452; Theoret. and Math. Phys., 168:3 (2011), 1236–1245
This publication is cited in the following 5 articles:
Karlova K., Strecka J., “Ising-Type Critical Exponents of the Fully Frustrated Spin-1/2 Heisenberg Fm/Af Square Bilayer At a Critical Magnetic Field”, Phase Transit., 92:4 (2019), 317–322
Strecka J., Karlova K., Baliha V., Derzhko O., “Ising Versus Potts Criticality in Low-Temperature Magnetothermodynamics of a Frustrated Spin-1/2 Heisenberg Triangular Bilayer”, Phys. Rev. B, 98:17 (2018), 174426
Krokhmalskii T., Baliha V., Derzhko O., Schulenburg J., Richter J., “Frustrated honeycomb-lattice bilayer quantum antiferromagnet in a magnetic field: Unconventional phase transitions in a two-dimensional isotropic Heisenberg model”, Phys. Rev. B, 95:9 (2017), 094419
Richter J., Krupnitska O., Krokhmalskii T., Derzhko O., “Frustrated Diamond-Chain Quantum Xxz Heisenberg Antiferromagnet in a Magnetic Field”, J. Magn. Magn. Mater., 379 (2015), 39–44
Maksymenko M., Derzhko O., Richter J., “Localized states on triangular traps and low-temperature properties of the antiferromagnetic Heisenberg and repulsive Hubbard models”, Eur Phys J B, 84:3 (2011), 397–408