output
20152025
most citedMachine Learning applied to asteroid dynamics

28 citations

7 papers

physics.chem-ph2025★ 1 cited

Nearest neighbor permutation entropy detects phase transitions in complex high-pressure systems

Arthur A. B. Pessa, Leonardo G. J. M. Voltarelli, Lucio Cardozo-Filho +5

Understanding the high-pressure phase behavior of carbon dioxide-hydrocarbon mixtures is of considerable interest owing to their wide range of applications. Under certain condition…

astro-ph.EP2025★ 4 cited

The invisible threat: assessing the collisional hazard posed by the undiscovered Venus co-orbital asteroids

V. Carruba, R. Sfair, R. A. Araujo +7

Currently, 20 co-orbital asteroids of Venus are known, with only one with an eccentricity below 0.38. This is most likely caused by observational biases since asteroids with larger…

astro-ph.EP2021★ 4 cited

A Particle-Linkage Model for Elongated Asteroids with Three-Dimensional Mass Distribution

Leonardo B. T. Santos, Luis. O. Marchi, Aljbaae Safwan +3

The goal of the present paper is to develop a simplified model to describe the gravitational fields of elongated asteroids. The proposed model consists of representing an elongated…

astro-ph.EP2021★ 28 cited

Machine Learning applied to asteroid dynamics

V. Carruba, S. Aljbaae, R. C. Domingos +2

Machine Learning (ML) is the branch of computer science that studies computer algorithms that can learn from data. It is mainly divided into supervised learning, where the computer…

physics.optics2020★ 8 cited

Intermodal Brillouin scattering in solid-core photonic crystal fibers

Paulo F. Jarschel, Erick Lamilla, Yovanny A. V. Espinel +5

We investigate intermodal forward Brillouin scattering in a solid-core PCF, demonstrating efficient power conversion between the HE11 and HE21 modes, with a maximum gain coefficien…

astro-ph.EP2019★ 1 cited

Adapting a solid accretion scenario for migrating planets in FARGO3D

L A DePaula, T A Michtchenko, P A Sousa-Silva

In this work, we adapt a module for planetary formation within the hydrodynamic code FARGO3D. Planetary formation is modeled by a solid core accretion scenario, with the core growi…