Perturbative Quantum Monte Carlo Study of LiHoF4 in a Transverse Magnetic Field
S.M.A Tabei, M.J.P. Gingras, Y.-J. Kao, T. Yavors'kii

TL;DR
This study uses a perturbative classical Monte Carlo approach to analyze the phase diagram of LiHoF4 in a transverse magnetic field, aiming to resolve discrepancies with experimental results observed in previous quantum Monte Carlo studies.
Contribution
It introduces a perturbative classical Hamiltonian derived from quantum fluctuations to investigate the LiHoF4 phase diagram, testing various modeling assumptions.
Findings
Reproduces previous QMC results at small Bx
Modifications to the Hamiltonian do not align results with experiments
Quantum fluctuations have limited impact in the weak Bx regime
Abstract
P.B. Chakraborty {\it et al.}, Phys. Rev. B {\bf 70}, 144411 (2004)) study of the LiHoF Ising magnetic material in an external transverse magnetic field show a discrepancy with the experimental results, even for small where quantum fluctuations are small. This discrepancy persists asymptotically close to the classical ferromagnet to paramagnet phase transition. In this paper, we numerically reinvestigate the temperature , versus transverse field phase diagram of LiHoF in the regime of weak . In this regime, starting from an effective low-energy spin-1/2 description of LiHoF, we apply a cumulant expansion to derive an effective temperature-dependent classical Hamiltonian that incorporates perturbatively the small quantum fluctuations in the vicinity of the classical phase transition at . Via this effective classical Hamiltonian, we study the …
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