Multiscale Excitations in the Diluted Two-dimensional S = 1/2 Heisenberg Antiferromagnet

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Main Authors: Dao, Liuyun, Shao, Hui, Sandvik, Anders W.
Format: Preprint
Published: 2024
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author Dao, Liuyun
Shao, Hui
Sandvik, Anders W.
author_facet Dao, Liuyun
Shao, Hui
Sandvik, Anders W.
contents We study the excitation spectrum of the $S=1/2$ Heisenberg model on the randomly diluted square lattice by analytic continuation of QMC data. At dilution fractions $p=1/16$ and $p=1/8$, the dynamic structure factor $S({\bf q},ω)$ exhibits a damped magnon peak with anomalous dispersion near ${\bf q}=(0,0)$ and $(π,π)$, a non-dispersive low-energy localization peak, and a second peak between these two features. A magnon with anomalous dispersion, close to our result, was predicted in spin wave and $T$-matrix theory [A. Chernyshev et al., PRB {\bf 65}, 104407 (2002)], above the localization energy. However, no intermediate mode was predicted. Analyzing spectral functions in real space for individual vacancy realizations by energy tomography, we find that these excitations are concentrated on a small subset of the spins adjacent to vacancies. We argue that the low-energy excitations are those of a sparse random network of effective moments at a fraction of the vacancies. There is a shift in magnon spectral weight distribution, from the spins away from vacancies at high energy to those adjacent to vacancies at lower energy. We also analyze the Anderson quantum rotor excitation at $ω\propto N^{-1}$ (with $N=L^2$ the system size), which in the clean system is visible in $S({\bf q},ω)$ only at ${\bf q}=(π,π)$ but spreads through the Brillouin zone when $p>0$. Weight close to ${\bf q}=(0,0)$ and $(π,π)$ is explained by local sublattice imbalance within a dimer-monomer model but there is also structure arising from correlated singlet fluctuations, which we demonstrate by enhancing said fluctuations with four-spin couplings. All spectral features found here should be observable by elastic neutron scattering experiments on layered quantum antiferromagnets doped with nonmagnetic impurities.
format Preprint
id arxiv_https___arxiv_org_abs_2408_06749
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Multiscale Excitations in the Diluted Two-dimensional S = 1/2 Heisenberg Antiferromagnet
Dao, Liuyun
Shao, Hui
Sandvik, Anders W.
Strongly Correlated Electrons
Statistical Mechanics
We study the excitation spectrum of the $S=1/2$ Heisenberg model on the randomly diluted square lattice by analytic continuation of QMC data. At dilution fractions $p=1/16$ and $p=1/8$, the dynamic structure factor $S({\bf q},ω)$ exhibits a damped magnon peak with anomalous dispersion near ${\bf q}=(0,0)$ and $(π,π)$, a non-dispersive low-energy localization peak, and a second peak between these two features. A magnon with anomalous dispersion, close to our result, was predicted in spin wave and $T$-matrix theory [A. Chernyshev et al., PRB {\bf 65}, 104407 (2002)], above the localization energy. However, no intermediate mode was predicted. Analyzing spectral functions in real space for individual vacancy realizations by energy tomography, we find that these excitations are concentrated on a small subset of the spins adjacent to vacancies. We argue that the low-energy excitations are those of a sparse random network of effective moments at a fraction of the vacancies. There is a shift in magnon spectral weight distribution, from the spins away from vacancies at high energy to those adjacent to vacancies at lower energy. We also analyze the Anderson quantum rotor excitation at $ω\propto N^{-1}$ (with $N=L^2$ the system size), which in the clean system is visible in $S({\bf q},ω)$ only at ${\bf q}=(π,π)$ but spreads through the Brillouin zone when $p>0$. Weight close to ${\bf q}=(0,0)$ and $(π,π)$ is explained by local sublattice imbalance within a dimer-monomer model but there is also structure arising from correlated singlet fluctuations, which we demonstrate by enhancing said fluctuations with four-spin couplings. All spectral features found here should be observable by elastic neutron scattering experiments on layered quantum antiferromagnets doped with nonmagnetic impurities.
title Multiscale Excitations in the Diluted Two-dimensional S = 1/2 Heisenberg Antiferromagnet
topic Strongly Correlated Electrons
Statistical Mechanics
url https://arxiv.org/abs/2408.06749