arXiv · 1207.5084
Quantum phase transitions in alternating spin-(1/2, 5/2) Heisenberg chains
Abstract
The ground state spin-wave excitations and thermodynamic properties of two types of ferrimagnetic chains are investigated: the alternating spin-1/2 spin-5/2 chain and a similar chain with a spin-1/2 pendant attached to the spin-5/2 site. Results for magnetic susceptibility, magnetization and specific heat are obtained through the finite-temperature Lanczos method with the aim in describing available experimental data, as well as comparison with theoretical results from the semiclassical approximation and the low-temperature susceptibility expansion derived from Takahashi's modified spin-wave theory. In particular, we study in detail the temperature vs. magnetic field phase diagram of the spin-1/2 spin-5/2 chain, in which several low-temperature quantum phases are identified: the Luttinger Liquid phase, the ferrimagnetic plateau and the fully polarized one, and the respective quantum critical points and crossover lines.
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A. S. F. Tenório, R. R. Montenegro-Filho, M. D. Coutinho-Filho. 2012-07-21. Quantum phase transitions in alternating spin-(1/2, 5/2) Heisenberg chains. https://doi.org/10.1088/0953-8984%2F23%2F50%2F506003
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