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Inelastic Collision Influencing the Rotational Dynamics of a Non-Rigid Asteroid (of Rubble Pile Type)

Author

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  • Sergey Ershkov

    (Department of Scientific Researches, Plekhanov Russian University of Economics, Scopus Number 60030998, Moscow 117997, Russia
    Sternberg Astronomical Institute, M.V. Lomonosov’s Moscow State University, 13 Universitetskij Prospect, Moscow 119992, Russia)

  • Dmytro Leshchenko

    (Odessa State Academy of Civil Engineering and Architecture, 65029 Odessa, Ukraine)

Abstract

We have considered here a novel particular model for dynamics of a non-rigid asteroid rotation, assuming the added mass model instead of the concept of Viscoelastic Oblate Rotators to describe the physically reasonable response of a ‘rubble pile’ volumetric material of asteroid with respect to the action of a projectile impacting its surface. In such a model, the response is approximated as an inelastic collision in which the projectile pushes the ‘rubble pile’ parts of the asteroid together to form a mostly solidified plug in the crater during the sudden impact on the asteroid’s surface. Afterwards, the aforementioned ‘solidified plug’ (having no sufficient adhesion inside the after-impact crater) will be pushed outside the asteroid’s surface by centrifugal forces, forming a secondary rotating companion around the asteroid. Thus, according to the fundamental law of angular momentum conservation, the regime of the asteroid’s rotation should be changed properly. Namely, changes in rotational dynamics stem from decreasing the asteroid’s mass (due to the fundamental law of angular momentum conservation). As the main finding, we have presented a new solving procedure for a semi-analytical estimation of the total mass of the aforementioned ‘solidified plug’, considering the final spin state of rotation for the asteroid with minimal kinetic energy reduced during a long time period by the inelastic (mainly, tidal) dissipation. The asteroid is assumed to be rotating mainly along the maximal inertia axis with a proper spin state corresponding to minimal energy with a fixed angular momentum.

Suggested Citation

  • Sergey Ershkov & Dmytro Leshchenko, 2023. "Inelastic Collision Influencing the Rotational Dynamics of a Non-Rigid Asteroid (of Rubble Pile Type)," Mathematics, MDPI, vol. 11(6), pages 1-7, March.
  • Handle: RePEc:gam:jmathe:v:11:y:2023:i:6:p:1491-:d:1100974
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    References listed on IDEAS

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    1. Scott R. Waitukaitis & Heinrich M. Jaeger, 2012. "Impact-activated solidification of dense suspensions via dynamic jamming fronts," Nature, Nature, vol. 487(7406), pages 205-209, July.
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    Cited by:

    1. Sergey Ershkov & Dmytro Leshchenko & Evgeniy Prosviryakov, 2023. "Revisiting Long-Time Dynamics of Earth’s Angular Rotation Depending on Quasiperiodic Solar Activity," Mathematics, MDPI, vol. 11(9), pages 1-10, April.

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