Many-body effects beyond excitons in second-harmonic generation of monolayer MoS$_{2}$

We present a quantitative study of many-body effects including the three-particle level on second-harmonic generation in monolayer MoS _2 2 . Our approach combines many-body perturbation theory with time-dependent current-density-functional theory within an ab initio framework in the optical limit. The inclusion of two-particle excitonic effects via a dynamical long-range linear exchange-correlation kernel reproduces the qualitative features of the second-harmonic response, but differs from the experimentally reported magnitude by nearly a factor of two. By incorporating three-particle trionic correlations through a static long-range quadratic exchange-correlation kernel, we achieve significantly improved quantitative agreement with experiment for the three main bound excitonic resonances. These findings suggest that many-body interactions beyond the two-body excitonic level can play an important role in accurately describing second-order optical responses in two-dimensional semiconductors.

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Publication Details

Journal
SciPost Physics
Published
2026-09-15
DOI
https://doi.org/10.21468/scipostphys.21.3.068
Primary Topic
2D Materials and Applications
Type
article
Field-Weighted Citation Impact
0.00

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article

Many-body effects beyond excitons in second-harmonic generation of monolayer MoS$_{2}$

Peio Garcia-Goiricelaya, Julen Ibañez-Azpiroz
SciPost Physics
2D Materials and Applications
article

Many-body effects beyond excitons in second-harmonic generation of monolayer MoS$_{2}$

Peio Garcia-Goiricelaya, Julen Ibañez-Azpiroz
article en

Abstract

We present a quantitative study of many-body effects including the three-particle level on second-harmonic generation in monolayer MoS _2 2 . Our approach combines many-body perturbation theory with time-dependent current-density-functional theory within an ab initio framework in the optical limit. The inclusion of two-particle excitonic effects via a dynamical long-range linear exchange-correlation kernel reproduces the qualitative features of the second-harmonic response, but differs from the experimentally reported magnitude by nearly a factor of two. By incorporating three-particle trionic correlations through a static long-range quadratic exchange-correlation kernel, we achieve significantly improved quantitative agreement with experiment for the three main bound excitonic resonances. These findings suggest that many-body interactions beyond the two-body excitonic level can play an important role in accurately describing second-order optical responses in two-dimensional semiconductors.

SciPost PhysicsVol. 21(3)
Ikerbasque (ES), University of the Basque Country (ES), Material Physics Center (ES), Donostia International Physics Center (ES)
Eusko Jaurlaritza
Openalex Percentile: Top 90%
2D Materials and Applications
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Many-body effects beyond excitons in second-harmonic generation of monolayer MoS$_{2}$ — Peio Garcia-Goiricelaya, Julen Ibañez-Azpiroz · SciPost Physics (2026) | TGRS Research Map | TGRS