Coupling quantum spin ice to matter on the centered pyrochlore lattice

Fuente: arXiv
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Main Authors: Nutakki, Rajah P., Capponi, Sylvain, Jaubert, Ludovic D. C., Pollet, Lode
Format: Preprint
Published: 2025
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author Nutakki, Rajah P.
Capponi, Sylvain
Jaubert, Ludovic D. C.
Pollet, Lode
author_facet Nutakki, Rajah P.
Capponi, Sylvain
Jaubert, Ludovic D. C.
Pollet, Lode
contents The low-energy physics of quantum spin ice is known to support an emergent form of quantum electrodynamics (QED), where magnetic monopoles exist and the fine structure constant is material dependent. In this article, we show how this QED is modified via a coupling to dynamical matter on the centered pyrochlore lattice, a structure which has recently been synthesized using metal-organic frameworks. Specifically, we study the low-energy properties of the $S = 1/2$ quantum XXZ model on the centered pyrochlore lattice, with a focus on the sign-problem free region. At fourth order in degenerate perturbation theory this model hosts a quantum spin liquid distinct from the well-known U(1) quantum spin ice on the pyrochlore due to the presence of dynamical matter in the ground state. Exact diagonalization results are consistent with this quantum spin liquid over an extended region of the ground state phase diagram although potential quantum critical points within this region could indicate a richer phase structure. Our work thus expands the physics of quantum spin ice in an experimentally motivated geometry, showing how the emergent QED can be coupled to dynamical matter at zero temperature.
format Preprint
id arxiv_https___arxiv_org_abs_2505_15677
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Coupling quantum spin ice to matter on the centered pyrochlore lattice
Nutakki, Rajah P.
Capponi, Sylvain
Jaubert, Ludovic D. C.
Pollet, Lode
Strongly Correlated Electrons
The low-energy physics of quantum spin ice is known to support an emergent form of quantum electrodynamics (QED), where magnetic monopoles exist and the fine structure constant is material dependent. In this article, we show how this QED is modified via a coupling to dynamical matter on the centered pyrochlore lattice, a structure which has recently been synthesized using metal-organic frameworks. Specifically, we study the low-energy properties of the $S = 1/2$ quantum XXZ model on the centered pyrochlore lattice, with a focus on the sign-problem free region. At fourth order in degenerate perturbation theory this model hosts a quantum spin liquid distinct from the well-known U(1) quantum spin ice on the pyrochlore due to the presence of dynamical matter in the ground state. Exact diagonalization results are consistent with this quantum spin liquid over an extended region of the ground state phase diagram although potential quantum critical points within this region could indicate a richer phase structure. Our work thus expands the physics of quantum spin ice in an experimentally motivated geometry, showing how the emergent QED can be coupled to dynamical matter at zero temperature.
title Coupling quantum spin ice to matter on the centered pyrochlore lattice
topic Strongly Correlated Electrons
url https://arxiv.org/abs/2505.15677