kinetic impact and gravitational perturbations for asteroid deflection
Bruno Chagas, Antonio F.B. de A. Prado, Othon C. Winter

TL;DR
This paper evaluates how gravitational perturbations influence the effectiveness of kinetic impact techniques for asteroid deflection, aiming to improve planetary defense strategies against potentially hazardous near-Earth objects.
Contribution
It introduces an analysis of gravitational effects on kinetic impact deflection models, which is a novel aspect in asteroid deflection research.
Findings
Gravitational perturbations significantly affect impact outcomes.
Inclusion of gravitational effects improves deflection accuracy.
Results suggest optimized impact strategies considering gravitational influences.
Abstract
Asteroids have called the attention of researchers around the world. Its chemical and physical composition can give us important information about the formation of our Solar System. In addition, the hypothesis of mining some of these objects is considered, since they contain precious metals. However, some asteroids have their orbits close to the orbit of the Earth. These nearby objects can pose a danger to our life in the planet, since some of them are large enough to cause catastrophic damage to the Earth. We will pay attention to the theme of deflecting a potentially dangerous asteroid. There are currently two main forms of this deviation: i) the impact of an object at high velocity with the asteroid, which can be a space vehicle or a smaller asteroid; ii) the use of a gravitational "tractor", which consist in placing an object (another asteroid or part of an asteroid), close to the…
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Taxonomy
TopicsAstro and Planetary Science · High-pressure geophysics and materials · Planetary Science and Exploration
