The Formation and Evolution of Wide-Orbit Stellar Multiples In Magnetized Clouds
arXiv:1911.07863 · doi:10.3847/1538-4357/ab584b
Abstract
Stars rarely form in isolation. Nearly half of the stars in the Milky Way have a companion, and this fraction increases in star-forming regions. However, why some dense cores and filaments form bound pairs while others form single stars remains unclear. We present a set of three-dimensional, gravo-magnetohydrodynamic simulations of turbulent star-forming clouds, aimed at understanding the formation and evolution of multiple-star systems formed through large scale (>~ AU) turbulent fragmentation. We investigate three global magnetic field strengths, with global mass-to-flux ratios of =2, 8, and 32. The initial separations of protostars in multiples depends on the global magnetic field strength, with stronger magnetic fields (e.g., =2) suppressing fragmentation on smaller scales. The overall multiplicity fraction (MF) is between 0.4-0.6 for our strong and intermediate magnetic field strengths, which is in agreement with observations. The weak field case has a lower fraction. The MF is relatively constant throughout the simulations, even though stellar densities increase as collapse continues. While the MF rarely exceeds 60% in all three simulations, over 80% of all protostars are part of a binary system at some point. We additionally find that the distribution of binary spin mis-alignment angles is consistent with a randomized distribution. In all three simulations, several binaries originate with wide separations and dynamically evolve to <~ AU separations. We show that a simple model of mass accretion and dynamical friction with the gas can explain this orbital evolution.
Accepted to ApJ. 28 pages, 23 figures, comments from the community welcomed
References in corpus (23)
- Theory of Star Formation
- The Resolved Properties of Extragalactic Giant Molecular Clouds
- Radiation-Hydrodynamic Simulations of Collapse and Fragmentation in Massive Protostellar Cores
- The properties of brown dwarfs and low-mass hydrogen-burning stars formed by disc fragmentation
- On the diversity and statistical properties of protostellar discs
- The Mass Distribution and Lifetime of Prestellar Cores in Perseus, Serpens, and Ophiuchus
- A new Jeans resolution criterion for (M)HD simulations of self-gravitating gas: Application to magnetic field amplification by gravity-driven turbulence
- A Triple Protostar System Formed via Fragmentation of a Gravitationally Unstable Disk
- Fragmentation of Massive Protostellar Disks
- The Fragmentation of Magnetized, Massive Star-Forming Cores with Radiative Feedback
- The effect of magnetic fields on star cluster formation
- A VLT/NACO Survey for Triple and Quadruple Systems among Visual Pre-Main Sequence Binaries
- Close companions around young stars
- Driven and Decaying Turbulence Simulations of Low-Mass Star Formation: From Clumps to Cores to Protostars
- The Turbulent Origin of Outflow and Spin Misalignment in Multiple Star Systems
- Planetary Systems in Binaries. I. Dynamical Classification
- Impact of Protostellar Outflows on Turbulence and Star Formation Efficiency in Magnetized Dense Cores
- The Formation of Stellar Clusters in Magnetized, Filamentary Infrared Dark Clouds
- Time Varying Dynamical Star Formation Rate
- Synthetic Observations of Magnetic Fields in Protostellar Cores
- Binary Capture Rates for Massive Protostars
- SMA CO(2-1) Observations of CG30: A Protostellar Binary System with a High-Velocity Quadrupolar Molecular Outflow
- Stability of multiplanet systems in binaries
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- The Origin of the Stellar Mass Distribution and Multiplicity
- Orbital Parameter Determination for Wide Stellar Binary Systems in the Age of Gaia
- Orbital Architectures of Planet-Hosting Binaries II. Low Mutual Inclinations Between Planetary and Stellar Orbits
- The IMF and multiplicity of stars from gravity, turbulence, magnetic fields, radiation and outflow feedback
- A likely flyby of binary protostar Z CMa caught in action
- Effects of the environment on the multiplicity properties of stars in the STARFORGE simulations
- The Solar Neighborhood XLIX: New Discoveries and Orbits of M Dwarf Multiples with Speckle Interferometry at SOAR
- The HD 98800 quadruple pre-main sequence system. Towards full orbital characterisation using long-baseline infrared interferometry
- Kinematic Analysis of a Protostellar Multiple System: Measuring the Protostar Masses and Assessing Gravitational Instability in the Disks of L1448 IRS3B and L1448 IRS3A
- Disk Evolution Study Through Imaging of Nearby Young Stars (DESTINYS): A Panchromatic View of DO Tau's Complex Kilo-au Environment
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- ARMADA I: Triple Companions Detected in B-Type Binaries alpha Del and nu Gem
- A 16 au Binary in the Class 0 Protostar L1157 MMS
- Pairing function of visual binary stars
- A spectroscopic quadruple as a possible progenitor of sub-Chandrasekhar Type Ia supernovae