English

Quantum spin ice on the breathing pyrochlore lattice

Strongly Correlated Electrons 2016-08-23 v2

Abstract

The Coulombic quantum spin liquid in quantum spin ice is an exotic quantum phase of matter that emerges on the pyrochlore lattice and is currently actively searched for. Motivated by recent experiments on the Yb-based breathing pyrochlore material Ba3_3Yb2_2Zn5_5O11_{11}, we theoretically study the phase diagram and magnetic properties of the relevant spin model. The latter takes the form of a quantum spin ice Hamiltonian on a breathing pyrochlore lattice, and we analyze the stability of the quantum spin liquid phase in the absence of the inversion symmetry which the lattice breaks explicitly at lattice sites. Using a gauge mean-field approach, we show that the quantum spin liquid occupies a finite region in parameter space. Moreover, there exists a direct quantum phase transition between the quantum spin liquid phase and featureless paramagnets, even though none of theses phases break any symmetry. At nonzero temperature, we show that breathing pyrochlores provide a much broader finite temperature spin liquid regime than their regular counterparts. We discuss the implications of the results for current experiments and make predictions for future experiments on breathing pyrochlores.

Keywords

Cite

@article{arxiv.1511.06972,
  title  = {Quantum spin ice on the breathing pyrochlore lattice},
  author = {Lucile Savary and Xiaoqun Wang and Hae-Young Kee and Yong Baek Kim and Yue Yu and Gang Chen},
  journal= {arXiv preprint arXiv:1511.06972},
  year   = {2016}
}

Comments

Published. Update the author list. 10 pages, 3 figures

R2 v1 2026-06-22T11:51:24.921Z