Spontaneous Parity Breaking in Quantum Antiferromagnets on the Triangular Lattice

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Lv, Songtai, Meng, Yuchen, Zou, Haiyuan
Format: Preprint
Published: 2026
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866908816375808000
author Lv, Songtai
Meng, Yuchen
Zou, Haiyuan
author_facet Lv, Songtai
Meng, Yuchen
Zou, Haiyuan
contents Frustration on the triangular lattice has long been a source of intriguing and often debated phases in many-body systems. Although symmetry analysis has been employed, the role of the seemingly trivial parity symmetry has received little attention. In this work, we show that phases induced by frustration are systematically shaped by an implicit rule of thumb associated with spontaneous parity breaking. This principle enables us to anticipate and rationalize the regimes and conditions under which nontrivial phases emerge. For the spin-$S$ antiferromagnetic XXZ model, we demonstrate that a controversial parity-broken phase appears only at intermediate values of $S$. In bilayer systems, enhanced frustration leads to additional phases, such as supersolids, whose properties can be classified by their characteristic parity features. Benefiting from our improved tensor network contraction techniques, we confirm these results through large-scale tensor-network calculations. This study offers an alternative viewpoint and a systematic approach for examining the interplay between spin, symmetry, and frustration in many-body systems.
format Preprint
id arxiv_https___arxiv_org_abs_2602_05901
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Spontaneous Parity Breaking in Quantum Antiferromagnets on the Triangular Lattice
Lv, Songtai
Meng, Yuchen
Zou, Haiyuan
Strongly Correlated Electrons
Statistical Mechanics
High Energy Physics - Lattice
Quantum Physics
Frustration on the triangular lattice has long been a source of intriguing and often debated phases in many-body systems. Although symmetry analysis has been employed, the role of the seemingly trivial parity symmetry has received little attention. In this work, we show that phases induced by frustration are systematically shaped by an implicit rule of thumb associated with spontaneous parity breaking. This principle enables us to anticipate and rationalize the regimes and conditions under which nontrivial phases emerge. For the spin-$S$ antiferromagnetic XXZ model, we demonstrate that a controversial parity-broken phase appears only at intermediate values of $S$. In bilayer systems, enhanced frustration leads to additional phases, such as supersolids, whose properties can be classified by their characteristic parity features. Benefiting from our improved tensor network contraction techniques, we confirm these results through large-scale tensor-network calculations. This study offers an alternative viewpoint and a systematic approach for examining the interplay between spin, symmetry, and frustration in many-body systems.
title Spontaneous Parity Breaking in Quantum Antiferromagnets on the Triangular Lattice
topic Strongly Correlated Electrons
Statistical Mechanics
High Energy Physics - Lattice
Quantum Physics
url https://arxiv.org/abs/2602.05901