paper

confined and deconfined Coulomb liquids in pyrochlore magnets

arXiv:2602.23041

Abstract

We identify an interesting regime in the physics of pyrochlore magnets in which spin-orbit and crystal field effects lead to {\em two} low-lying magnetic doublets that can be modeled as an effective spin degree of freedom that sees a dominant easy-axis antiferromagnetic exchange favoring the local axes, which competes with a comparably strong single-ion anisotropy (with ) favoring the perpendicular planes. For a precise analysis, we study the limit in which is the control variable. In this limit, we find {\em two topologically distinct} zero-field Coulomb phases separated by a first-order confinement transition at . Both Coulomb phases admit a description in terms of the fluctuations of a coarse-grained divergence-free polarization field. However, the flux of this polarization field is restricted to integer multiples of , and only charges that are multiples of 3 are deconfined in one of these phases, while all integer fluxes are allowed and all integer charges are deconfined in the other phase. Experimental systems with small negative ({\em i.e.}, ) are therefore predicted to exhibit signatures of this topological transition when cooled below .

5 2-column pages and a 2-page appendix