English

A pseudofermion functional renormalization group study of dipolar-octupolar pyrochlore magnets

Strongly Correlated Electrons 2024-05-21 v1

Abstract

Motivated by recent experiments on Ce2_2Zr2_2O7_7 that reveal a dynamic, liquid-like ground state, we study the nearest neighbor XYZ Hamiltonian of dipolar-octupolar pyrochlore magnets with the pseudofermion functional renormalization group (PFFRG), which is numerically implemented by the SpinParser software. Taking the interaction between the octupolar components to be dominant and antiferromagnetic, we map out the phase diagram demarcating the quantum disordered and magnetically ordered states. We identify four distinct phases, namely the 00-flux and π\pi-flux quantum spin ices, and the all-in-all-out magnetic orders along the local zz and xx axes. We further use the static two-spin correlations output by the PFFRG algorithm to compute the polarized neutron scattering cross-sections, which are able to capture several qualitative features observed experimentally, in the materially relevant parameter regime that stabilizes the π\pi-flux quantum spin ice. Our results provide support for a quantum spin liquid ground state in Ce2_2Zr2_2O7_7.

Keywords

Cite

@article{arxiv.2311.04269,
  title  = {A pseudofermion functional renormalization group study of dipolar-octupolar pyrochlore magnets},
  author = {Li Ern Chern and Félix Desrochers and Yong Baek Kim and Claudio Castelnovo},
  journal= {arXiv preprint arXiv:2311.04269},
  year   = {2024}
}

Comments

10+6 pages, 6+5 figures

R2 v1 2026-06-28T13:14:29.402Z