Planet formation around M dwarfs via disc instability: Fragmentation conditions and protoplanet properties
arXiv:2001.10062 · doi:10.1051/0004-6361/201936954
Abstract
Context: Around 30 per cent of the observed exoplanets that orbit M dwarf stars are gas giants that are more massive than Jupiter. These planets are prime candidates for formation by disc instability. Aims: We want to determine the conditions for disc fragmentation around M dwarfs and the properties of the planets that are formed by disc instability. Methods: We performed hydrodynamic simulations of M dwarf protostellar discs in order to determine the minimum disc mass required for gravitational fragmentation to occur. Different stellar masses, disc radii, and metallicities were considered. The mass of each protostellar disc was steadily increased until the disc fragmented and a protoplanet was formed. Results: We find that a disc-to-star mass ratio between and is required for fragmentation to happen. The minimum mass at which a disc fragments increases with the stellar mass and the disc size. Metallicity does not significantly affect the minimum disc fragmentation mass but high metallicity may suppress fragmentation. Protoplanets form quickly (within a few thousand years) at distances around AU from the host star, and they are initially very hot; their centres have temperatures similar to the ones expected at the accretion shocks around planets formed by core accretion (up to 12,000K). The final properties of these planets (e.g. mass and orbital radius) are determined through long-term disc-planet or planet-planet interactions. Conclusions: Disc instability is a plausible way to form gas giant planets around M dwarfs provided that discs have at least 30% the mass of their host stars during the initial stages of their formation. Future observations of massive M dwarf discs or planets around very young M dwarfs are required to establish the importance of disc instability for planet formation around low-mass stars.
26 pages, A&A accepted
References in corpus (38)
- Direct Imaging of Multiple Planets Orbiting the Star HR 8799
- Protoplanetary Disk Structures in Ophiuchus
- On the Luminosity of Young Jupiters
- The Gemini Planet Imager Exoplanet Survey: Giant Planet and Brown Dwarf Demographics From 10-100 AU
- The properties of brown dwarfs and low-mass hydrogen-burning stars formed by disc fragmentation
- Spiral Density Waves in a Young Protoplanetary Disk
- Inviscid SPH
- Planets Around Low-Mass Stars (PALMS). IV. The Outer Architecture of M Dwarf Planetary Systems
- Brown dwarf formation by gravitational fragmentation of massive, extended protostellar discs
- The minimum mass for star formation, and the origin of binary brown dwarfs
- Radiative transfer and the energy equation in SPH simulations of star formation
- A Statistical Analysis of SEEDS and Other High-Contrast Exoplanet Surveys: Massive Planets or Low-Mass Brown Dwarfs?
- Numerical requirements for simulations of self gravitating and non-self gravitating disks
- A giant exoplanet orbiting a very low-mass star challenges planet formation models
- The International Deep Planet Survey II: The frequency of directly imaged giant exoplanets with stellar mass
- The statistical properties of stars and their dependence on metallicity: the effects of opacity
- Towards a population synthesis model of self-gravitating disc fragmentation and tidal downsizing II: The effect of fragment-fragment interactions
- Stability of Multiplanetary Systems in Star Clusters
- Introducing a Hybrid Method of Radiative Transfer for Smoothed Particle Hydrodynamics
- On the reliability of protostellar disc mass measurements and the existence of fragmenting discs
- Effects of the Planetary Temperature on the Circumplanetary Disk and on the Gap
- Effects of radiation transfer on the structure of self-gravitating disks, their fragmentation and evolution of the fragments
- The properties of discs around planets and brown dwarfs as evidence for disc fragmentation
- Thermodynamics of Giant Planet Formation: Shocking Hot Surfaces on Circumplanetary Disks
- Dawes Review. The tidal downsizing hypothesis of planet formation
- Circumplanetary disks around young giant planets: a comparison between core-accretion and disk instability
- The Planetary Accretion Shock: I. Framework for Radiation-hydrodynamical Simulations and First Results
- Rapid Formation of Super-Earths around M Dwarf Stars
- MASSIVE: A Bayesian analysis of giant planet populations around low-mass stars
- Identifying and Analysing Protostellar Disc Fragments in Smoothed Particle Hydrodynamics Simulations
- GANDALF - Graphical Astrophysics code for N-body Dynamics And Lagrangian Fluids
- The effect of radiative feedback on disc fragmentation
- Giant planets and brown dwarfs on wide orbits: a code comparison project
- The dynamical evolution of low-mass hydrogen-burning stars, brown dwarfs and planetary-mass objects formed through disc fragmentation
- PSYM-WIDE: a survey for large-separation planetary-mass companions to late spectral type members of young moving groups
- An Efficient Radiative Cooling Approximation for Use in Hydrodynamic Simulations
- Fragmentation of protoplanetary disks around M-dwarfs
- The structure of young embedded protostellar discs
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- GASTLI: An open-source coupled interior-atmosphere model to unveil gas giant composition
- A dynamical mass for GJ 463 b: A massive super-Jupiter companion beyond the snow line of a nearby M dwarf
- Life on Exoplanets In the Habitable Zone of M-Dwarfs?
- Estimating , radius and luminosity of M-dwarfs using high resolution optical and NIR spectral features
- 3D orbital architecture of a dwarf binary system and its planetary companion
- Exploring the short-term variability of H and H emissions in a sample of M dwarfs
- On the survivability of a population of gas giant planets on wide orbits
- Constraining the Stellar Masses and Origin of the Protostellar VLA 1623 System
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