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Forming iron-rich planets with giant impacts

Reinhardt, Christian; Meier, Thomas; Stadel, Joachim G; Otegi, Jon F; Helled, Ravit (2022). Forming iron-rich planets with giant impacts. Monthly Notices of the Royal Astronomical Society, 517(3):3132-3143.

Abstract

We investigate mantle stripping giant impacts (GI) between super-Earths with masses between 1 and 20M⊕⁠. We infer new scaling laws for the mass of the largest fragment and its iron mass fraction, as well as updated fitting coefficients for the critical specific impact energy for catastrophic disruption, Q∗RD⁠. With these scaling laws, we derive equations that relate the impact conditions, i.e. target mass, impact velocity, and impactor-to-target mass ratio, to the mass and iron mass fraction of the largest fragment. This allows one to predict collision outcomes without performing a large suite of simulations. Using these equations we present the maximum and minimum planetary iron mass fraction as a result of collisional stripping of its mantle for a given range of impact conditions. We also infer the radius for a given mass and composition using interior structure models and compare our results to observations of metal-rich exoplanets. We find good agreement between the data and the simulated planets suggesting that GI could have played a key role in their formation. Furthermore, using our scaling laws we can further constrain the impact conditions that favour their masses and compositions. Finally, we present a flexible and easy-to-use tool that allows one to predict mass and composition of a planet after a GI for an arbitrary range of impact conditions, which, in turn, allows to assess the role of GI in observed planetary systems.

Additional indexing

Item Type:Journal Article, refereed, original work
Communities & Collections:07 Faculty of Science > Department of Astrophysics
Dewey Decimal Classification:530 Physics
Language:English
Date:22 October 2022
Deposited On:18 Nov 2022 11:55
Last Modified:25 Feb 2025 02:37
Publisher:Oxford University Press
ISSN:0035-8711
OA Status:Green
Free access at:Related URL. An embargo period may apply.
Publisher DOI:https://doi.org/10.1093/mnras/stac1853
Related URLs:https://arxiv.org/abs/2204.04925
Project Information:
  • Funder: Swiss National Science Foundation
  • Grant ID:
  • Project Title:
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  • Licence: Creative Commons: Attribution 4.0 International (CC BY 4.0)

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