Stellar-wind feedback and magnetic fields around young compact star clusters: 3D MHD simulations
arXiv:2503.19745 · doi:10.1051/0004-6361/202554057
Abstract
Context: The environments of young star clusters are shaped by the interactions of the powerful winds of massive stars, and their feedback on the cluster birth cloud. Several such clusters show diffuse gamma-ray emission on the degree scale, which hints at ongoing particle acceleration. Aims: To date, particle acceleration and transport in star-cluster environments are not well understood. A characterisation of magnetic fields and flow structures is necessary to progress toward physical models. Previous work has largely focused on 100 pc scale feedback or detailed modelling of wind interaction of just a few stars. We aim to bridge this gap. We focus in particular on compact clusters to study collective effects arising from stellar-wind interaction. Objects in this class include Westerlund 1 and R136. Methods: We perform 3D ideal-MHD simulations of compact, young, massive star clusters. Stellar winds are injected kinetically for 46 individual very massive stars (M > 40 Msun), distributed in a spherical region of radius 0.6 - 1 pc. We include a sub-population of five magnetic stars with increased dipole field strengths of 0.1 - 1 kG. We study the evolving superbubble over several 100 kyrs. Results: The bulk flow and magnetic fields show an intricate, non-uniform morphology, which is critically impacted by the relative position of individual stars. The cluster wind terminates in a strong shock, which is non-spherical and, like the flow, has non-uniform properties. The magnetic field is both composed of highly tangled sections and coherent quasi-radial field-line bundles. Steep particle spectra in the TeV domain arise naturally from the variation of magnetic field magnitude over the cluster-wind termination shock. This finding is consistent with gamma-ray observations. The scenario of PeV particle acceleration at the cluster-wind termination shock is deemed unlikely.
accepted for publication in A&A
References in corpus (37)
- The Initial Mass Function of Stars: Evidence for Uniformity in Variable Systems
- Grids of stellar models with rotation - I. Models from 0.8 to 120 Msun at solar metallicity (Z = 0.014)
- PLUTO: a Numerical Code for Computational Astrophysics
- Young massive star clusters
- A new calibration of stellar parameters of Galactic O stars
- Interrelated Main-Sequence Mass-Luminosity, Mass-Radius and Mass-Effective Temperature Relations
- The MiMeS survey of magnetism in massive stars: Magnetic analysis of the O-type stars
- Feedback from Winds and Supernovae in Massive Stellar Clusters. I: Hydrodynamics
- The origin of Galactic cosmic rays: challenges to the standard paradigm
- Non linear particle acceleration at non-relativistic shock waves in the presence of self-generated turbulence
- The PHANGS-JWST Treasury Survey: Star Formation, Feedback, and Dust Physics at High Angular resolution in Nearby GalaxieS
- Particle acceleration in winds of star clusters
- The Galactic WC and WO stars: The impact of revised distances from Gaia DR2 and their role as massive black hole progenitors
- The Galactic WN stars revisited. Impact of Gaia distances on fundamental stellar parameters
- A Chandra/ACIS Study of 30 Doradus I. Superbubbles and Supernova Remnants
- Recollimation Shocks in Magnetized Relativistic Jets
- Evolution of supernovae-driven superbubbles with conduction and cooling
- Cosmic ray acceleration at oblique shocks
- Efficiently Cooled Stellar Wind Bubbles in Turbulent Clouds II. Validation of Theory with Hydrodynamic Simulations
- On the shape of the spectrum of cosmic-rays accelerated inside superbubbles
- An Ultrahigh-energy -ray Bubble Powered by a Super PeVatron
- The Coherent Magnetic Field of the Milky Way
- Revisiting the Westerlund 2 Field with the H.E.S.S. Telescope Array
- Electron acceleration in non-relativistic quasi-perpendicular collisionless shocks
- Cosmic ray production in superbubbles
- Massive star cluster origin for the galactic cosmic ray population at very-high energies
- A deep spectromorphological study of the -ray emission surrounding the young massive stellar cluster Westerlund 1
- Realistic modeling of wind and supernovae shocks in star clusters: addressing and other problems in Galactic cosmic rays
- Inside the core of a young massive star cluster: 3D MHD simulations
- Constraining cosmic ray acceleration in young star clusters using multi-wavelength observations
- Amplification of perpendicular and parallel magnetic fields by cosmic ray currents
- Non-thermal particle acceleration at highly oblique non-relativistic shocks
- Observation of the -ray Emission from W43 with LHAASO
- Very-high-energy -ray emission from young massive star clusters in the Large Magellanic Cloud
- Core-collapse supernova inside the core of a young massive star cluster: 3D MHD simulations
- Cosmic-ray current-driven instabilities -- revisiting environmental conditions
- Thermal emission from bow shocks. III. Variable diffuse X-ray emission from stellar-wind bow shocks driven by dynamical instabilities
Cited by in corpus (7)
- PyPLUTO: a data analysis Python package for the PLUTO code
- Mass loading of outflows from evolving Young Massive Clusters
- Supernova remnants in super bubbles as cosmic ray accelerators
- Centrally concentrated star formation in young clusters
- Deciphering the gamma-ray emission in the Cygnus region
- Shells and bubbles around compact clusters of massive stars: 3D MHD simulations
- How interacting winds shape the mechanical feedback of massive star clusters over millions of years