Effective theory of quantum phases in the dipolar planar rotor chain
Abstract
In this work, we develop a theoretical description of the collective behavior of interacting dipolar planar rotors by using time independent perturbation theory and a small angle quadratic approximation. The ground state properties of both the ordered and disordered quantum phases of the system are directly calculated and analyzed. Time-independent perturbation theory is shown to be appropriate for the disordered phase. For the ordered phase, we construct a quadratic approximation based on the stable equilibrium configurations of the dipolar ordering; we show that the inclusion of the quartic terms from the expansion of the potential energy is essential to correct the shift in the energy spectrum due to quantization ambiguities. Numerical techniques such as exact diagonalization and density matrix renormalization group are used to benchmark the quality of both approximations.
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Authors: Estêvão V. B. de Oliveira, Muhammad Shaeer Moeed, Pierre–Nicholas Roy
Institutions: University of Waterloo, Perimeter Institute