Requiem for a belt: A spatial and kinematical reinterpretation of Gould's Belt in light of Gaia

Fuente: arXiv
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Autores principales: González, Michelangelo Pantaleoni, Alves, João, Swiggum, Cameren, Niederbrunner, Isak
Formato: Preprint
Publicado: 2026
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author González, Michelangelo Pantaleoni
Alves, João
Swiggum, Cameren
Niederbrunner, Isak
author_facet González, Michelangelo Pantaleoni
Alves, João
Swiggum, Cameren
Niederbrunner, Isak
contents We reassess the long-standing idea of Gould's Belt using Gaia DR3 for a sample of young massive stars and nearby young clusters. The structure surrounding the Sun, often interpreted as an inclined, expanding, and rotating ring, emerges in our analysis as a transient alignment of a few cluster families rather than an individual, coherent dynamical feature. By combining the ALS III catalog of OB stars with a homogeneous sample of clusters younger than 70 Myr, and by tracing their motions in a realistic Galactic potential, we show that neither the spatial distribution nor the kinematics form a unified system. The inferred expansion, rotation, and bulk motion of the Belt can be reproduced by the superposition of the $α$Per, Cr135, M6, and $γ$Vel cluster families and are further amplified by solar reflex motion and historical assumptions about the local standard of rest (LSR). The classic inclined geometry is largely explained by the oscillatory pattern of the Radcliffe Wave, which contributes a major arc of the supposed ring. Taken together, these results indicate that Gould's Belt is not a physical structure but a 3D asterism shaped by a complex local star formation history, observational biases, and projection effects.
format Preprint
id arxiv_https___arxiv_org_abs_2604_13225
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Requiem for a belt: A spatial and kinematical reinterpretation of Gould's Belt in light of Gaia
González, Michelangelo Pantaleoni
Alves, João
Swiggum, Cameren
Niederbrunner, Isak
Astrophysics of Galaxies
Solar and Stellar Astrophysics
We reassess the long-standing idea of Gould's Belt using Gaia DR3 for a sample of young massive stars and nearby young clusters. The structure surrounding the Sun, often interpreted as an inclined, expanding, and rotating ring, emerges in our analysis as a transient alignment of a few cluster families rather than an individual, coherent dynamical feature. By combining the ALS III catalog of OB stars with a homogeneous sample of clusters younger than 70 Myr, and by tracing their motions in a realistic Galactic potential, we show that neither the spatial distribution nor the kinematics form a unified system. The inferred expansion, rotation, and bulk motion of the Belt can be reproduced by the superposition of the $α$Per, Cr135, M6, and $γ$Vel cluster families and are further amplified by solar reflex motion and historical assumptions about the local standard of rest (LSR). The classic inclined geometry is largely explained by the oscillatory pattern of the Radcliffe Wave, which contributes a major arc of the supposed ring. Taken together, these results indicate that Gould's Belt is not a physical structure but a 3D asterism shaped by a complex local star formation history, observational biases, and projection effects.
title Requiem for a belt: A spatial and kinematical reinterpretation of Gould's Belt in light of Gaia
topic Astrophysics of Galaxies
Solar and Stellar Astrophysics
url https://arxiv.org/abs/2604.13225