Higgs mode in two-dimensional coherent spectroscopy of weak-coupling antiferromagnets

Fuente: arXiv
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Main Authors: Chen, Jiyu, Tsuji, Naoto, Werner, Philipp
Format: Preprint
Published: 2025
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author Chen, Jiyu
Tsuji, Naoto
Werner, Philipp
author_facet Chen, Jiyu
Tsuji, Naoto
Werner, Philipp
contents Two-dimensional coherent spectroscopy (2DCS) provides insights into the nonlinear response of correlated lattice systems. We simulate multipulse excitations in the Hubbard model using nonequilibrium dynamical mean-field theory to extract the 2DCS signal of weak-coupling antiferromagnets with and without disorder. By comparing calculations with static and dynamic Hartree terms, and analyzing the waiting-time dependence of the signal, we identify the contribution of the collective amplitude (Higgs) mode to the spectroscopic features and the relevant underlying processes. With broadband pulses, the rephasing and nonrephasing peaks at the gap energy are found to be of predominant Higgs character, while the two-quantum signals originate from single-particle excitations. Using narrow-band pulses, we also demonstrate a strong enhancement of these Higgs-related signals at a pulse frequency of half the gap size.
format Preprint
id arxiv_https___arxiv_org_abs_2504_21351
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Higgs mode in two-dimensional coherent spectroscopy of weak-coupling antiferromagnets
Chen, Jiyu
Tsuji, Naoto
Werner, Philipp
Strongly Correlated Electrons
Two-dimensional coherent spectroscopy (2DCS) provides insights into the nonlinear response of correlated lattice systems. We simulate multipulse excitations in the Hubbard model using nonequilibrium dynamical mean-field theory to extract the 2DCS signal of weak-coupling antiferromagnets with and without disorder. By comparing calculations with static and dynamic Hartree terms, and analyzing the waiting-time dependence of the signal, we identify the contribution of the collective amplitude (Higgs) mode to the spectroscopic features and the relevant underlying processes. With broadband pulses, the rephasing and nonrephasing peaks at the gap energy are found to be of predominant Higgs character, while the two-quantum signals originate from single-particle excitations. Using narrow-band pulses, we also demonstrate a strong enhancement of these Higgs-related signals at a pulse frequency of half the gap size.
title Higgs mode in two-dimensional coherent spectroscopy of weak-coupling antiferromagnets
topic Strongly Correlated Electrons
url https://arxiv.org/abs/2504.21351