Asteroid Rotation Periods: Statistical Analysis in the Diameter-Spin Distribution

Fuente: arXiv
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Main Authors: Nastaran, Maryam, Poro, Atila, Hosseini, Raziyeh, Najarzadeh, Matin
Format: Preprint
Published: 2025
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author Nastaran, Maryam
Poro, Atila
Hosseini, Raziyeh
Najarzadeh, Matin
author_facet Nastaran, Maryam
Poro, Atila
Hosseini, Raziyeh
Najarzadeh, Matin
contents This study examines the rotational characteristics of asteroids through statistical modeling of the diameter-period relationship. A statistical evaluation of the diameter-period relationship was conducted using a dataset of 34,326 asteroids. Clustering identified three main groups, including a dense cluster below the spin barrier, a population of small, fast-rotating asteroids, and a more diffuse group. Geometric and density-based analyses showed that the densest region consists of objects with diameters from 3 to 10 km and rotation periods between 3 and 9 hours, some of which extend beyond the spin barrier. Polynomial modeling demonstrated that a third-degree fit provides the most stable representation of the overall trend without overfitting. Additionally, an empirical lower boundary was identified and proposed, below which no asteroid was found in either the main sample or the selected targets.
format Preprint
id arxiv_https___arxiv_org_abs_2508_17415
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Asteroid Rotation Periods: Statistical Analysis in the Diameter-Spin Distribution
Nastaran, Maryam
Poro, Atila
Hosseini, Raziyeh
Najarzadeh, Matin
Earth and Planetary Astrophysics
This study examines the rotational characteristics of asteroids through statistical modeling of the diameter-period relationship. A statistical evaluation of the diameter-period relationship was conducted using a dataset of 34,326 asteroids. Clustering identified three main groups, including a dense cluster below the spin barrier, a population of small, fast-rotating asteroids, and a more diffuse group. Geometric and density-based analyses showed that the densest region consists of objects with diameters from 3 to 10 km and rotation periods between 3 and 9 hours, some of which extend beyond the spin barrier. Polynomial modeling demonstrated that a third-degree fit provides the most stable representation of the overall trend without overfitting. Additionally, an empirical lower boundary was identified and proposed, below which no asteroid was found in either the main sample or the selected targets.
title Asteroid Rotation Periods: Statistical Analysis in the Diameter-Spin Distribution
topic Earth and Planetary Astrophysics
url https://arxiv.org/abs/2508.17415