External photoevaporation of circumstellar disks constrains the timescale for planet formation

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Hauptverfasser: Concha-Ramírez, Francisca, Wilhelm, Maite J. C., Zwart, Simon Portegies, Haworth, Thomas J.
Format: Preprint
Veröffentlicht: 2019
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author Concha-Ramírez, Francisca
Wilhelm, Maite J. C.
Zwart, Simon Portegies
Haworth, Thomas J.
author_facet Concha-Ramírez, Francisca
Wilhelm, Maite J. C.
Zwart, Simon Portegies
Haworth, Thomas J.
contents Planet-forming circumstellar disks are a fundamental part of the star formation process. Since stars form in a hierarchical fashion in groups of up to hundreds or thousands, the UV radiation environment that these disks are exposed to can vary in strength by at least six orders of magnitude. This radiation can limit the masses and sizes of the disks. Diversity in star forming environments can have long lasting effects in disk evolution and in the resulting planetary populations. We perform simulations to explore the evolution of circumstellar disks in young star clusters. We include viscous evolution, as well as the impact of dynamical encounters and external photoevaporation. We find that photoevaporation is an important process in destroying circumstellar disks: in regions of stellar density $ρ\sim 100 \mathrm{\ M}_\odot \mathrm{\ pc}^{-3}\mathrm{\ }$ around 80% of disks are destroyed before 2 Myr of cluster evolution. Our findings are in agreement with observed disk fractions in young star forming regions and support previous estimations that planet formation must start in timescales < 0.1 - 1 Myr.
format Preprint
id arxiv_https___arxiv_org_abs_1907_03760
institution arXiv
publishDate 2019
record_format arxiv
spellingShingle External photoevaporation of circumstellar disks constrains the timescale for planet formation
Concha-Ramírez, Francisca
Wilhelm, Maite J. C.
Zwart, Simon Portegies
Haworth, Thomas J.
Earth and Planetary Astrophysics
Astrophysics of Galaxies
Planet-forming circumstellar disks are a fundamental part of the star formation process. Since stars form in a hierarchical fashion in groups of up to hundreds or thousands, the UV radiation environment that these disks are exposed to can vary in strength by at least six orders of magnitude. This radiation can limit the masses and sizes of the disks. Diversity in star forming environments can have long lasting effects in disk evolution and in the resulting planetary populations. We perform simulations to explore the evolution of circumstellar disks in young star clusters. We include viscous evolution, as well as the impact of dynamical encounters and external photoevaporation. We find that photoevaporation is an important process in destroying circumstellar disks: in regions of stellar density $ρ\sim 100 \mathrm{\ M}_\odot \mathrm{\ pc}^{-3}\mathrm{\ }$ around 80% of disks are destroyed before 2 Myr of cluster evolution. Our findings are in agreement with observed disk fractions in young star forming regions and support previous estimations that planet formation must start in timescales < 0.1 - 1 Myr.
title External photoevaporation of circumstellar disks constrains the timescale for planet formation
topic Earth and Planetary Astrophysics
Astrophysics of Galaxies
url https://arxiv.org/abs/1907.03760