FewBodyToolkit.jl: A Julia package for solving quantum few-body problems

Few-body physics explores quantum systems of a small number of particles, bridging the gap between single-particle and many-body regimes. To provide an accessible tool for such studies, we present FewBodyToolkit.jl, a Julia package for quantum few-body simulations. The package supports general two- and three-body systems in various spatial dimensions with arbitrary pair-interactions, and allows to calculate bound and resonant states. The implementation is based on the well-established Gaussian expansion method and we illustrate the package’s capabilities through benchmarks and research examples. The package comes with documentation and examples, making it useful for research, teaching, benchmarking, and method development.

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Publication Details

Journal
SciPost Physics Codebases
Published
2026-09-07
DOI
https://doi.org/10.21468/scipostphyscodeb.81
Citations
1
Primary Topic
Quantum many-body systems
Type
article
Field-Weighted Citation Impact
4.38

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article

FewBodyToolkit.jl: A Julia package for solving quantum few-body problems

Lucas Happ
1 citations
SciPost Physics Codebases
Quantum many-body systems
4.38
article

FewBodyToolkit.jl: A Julia package for solving quantum few-body problems

Lucas Happ
article en
1 citations

Abstract

Few-body physics explores quantum systems of a small number of particles, bridging the gap between single-particle and many-body regimes. To provide an accessible tool for such studies, we present FewBodyToolkit.jl, a Julia package for quantum few-body simulations. The package supports general two- and three-body systems in various spatial dimensions with arbitrary pair-interactions, and allows to calculate bound and resonant states. The implementation is based on the well-established Gaussian expansion method and we illustrate the package’s capabilities through benchmarks and research examples. The package comes with documentation and examples, making it useful for research, teaching, benchmarking, and method development.

SciPost Physics Codebases
Universität Ulm (DE), RIKEN Nishina Center (JP)
RIKEN
Openalex Percentile: Top 11%
Quantum many-body systems
4.38
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