The formation and stability of a cold disc made out of stellar winds in the Galactic Centre
arXiv:2411.00100 · doi:10.1051/0004-6361/202452800
Abstract
The reported discovery of a cold (~10 K) disc-like structure within 0.005 pc around the super-massive black hole at the centre of the Milky Way, Sgr A*, has challenged our understanding of the gas dynamics and thermodynamic state of the plasma in its immediate vicinity. State-of-the-art simulations do not agree on whether or not such a disc can be a product of the multiple stellar wind interactions of the mass-losing stars in the region. This study aims to constrain the conditions for the formation of a cold disc as a natural outcome of the system of the mass-losing stars orbiting around Sgr A*, to investigate whether the disc is a transient or long-lasting structure, and to assess the validity of the model through direct comparisons with observations. We performed a set of hydrodynamic simulations of the observed Wolf-Rayet (WR) stars feeding Sgr A* using the finite-volume adaptive mesh refinement code Ramses. We focus, for the first time, on the impact of the chemical composition of the plasma emanating from the WR stars. The simulations show that the chemical composition of the plasma affects the radiative cooling enough to impact the properties of the medium, such as density and temperature, and, as a consequence, the rate at which the material inflows onto Sgr A*. We demonstrate that the formation of a cold disc from the stellar winds is possible for certain chemical compositions that are consistent with the current observational constraints. However, even in such cases, it is not possible to reproduce the reported properties of the observed disc-like structure, namely its inclination and the fluxes of its hydrogen recombination lines. We conclude that the stellar winds alone are not sufficient to form the cold disc around Sgr A* inferred from observations. Either relevant ingredients are still missing in the model, or the interpretation of the observed data needs to be revised.
17 pages, 11 figures, 3 tables (+3 pages, +2 figures in Appendix). Accepted for publication in A&A
References in corpus (33)
- Array Programming with NumPy
- First Sagittarius A* Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole in the Center of the Milky Way
- Physical Properties of Wolf-Rayet Stars
- The Two Young Star Disks in the Central Parsec of the Galaxy: Properties, Dynamics and Formation
- The Athena++ Adaptive Mesh Refinement Framework: Design and Magnetohydrodynamic Solvers
- An Update on Monitoring Stellar Orbits in the Galactic Center
- The Galactic WN stars: Spectral analyses with line-blanketed model atmospheres versus stellar evolution models with and without rotation
- The structure of the nuclear stellar cluster of the Milky Way
- Stellar and wind properties of massive stars in the central parsec of the Galaxy
- Improved GRAVITY astrometric accuracy from modeling of optical aberrations
- Galactic Centre stellar winds and Sgr A* accretion
- Variable accretion and emission from the stellar winds in the Galactic centre
- Twelve years of spectroscopic monitoring in the Galactic Center: the closest look at S-stars near the black hole
- The Galactic WN stars revisited. Impact of Gaia distances on fundamental stellar parameters
- Modeling the orbital motion of Sgr A*'s near-infrared flares
- Aligning Nuclear Cluster Orbits with an Active Galactic Nucleus Accretion Disk
- The Surprisingly Small Impact of Magnetic Fields On The Inner Accretion Flow of Sagittarius A* Fueled By Stellar Winds
- Accretion of cool stellar winds on Sgr A*: another puzzle of the Galactic Centre?
- The young stars in the Galactic Center
- A Cool Accretion Disk around the Galactic Centre Black Hole
- Stellar winds pump the heart of the Milky Way
- The role of feedback in accretion on Low Luminosity AGN: Sgr A* case study
- Evidence for a jet and outflow from Sgr A*: a continuum and spectral line study
- Colliding Winds in and around the Stellar Group IRS 13E at the Galactic Center
- Constraining the accretion flow density profile near Sgr A* using the -band emission of the S2 star
- The Inner 2 pc of Sagittarius A*: Simulations of the Circumnuclear Disk and Multiphase Gas Accretion in the Galactic Center
- The Swansong of the Galactic Center Source X7: An Extreme Example of Tidal Evolution near the Supermassive Black Hole
- Evolution of rotating massive stars with new hydrodynamic wind models
- Upper Limit on Brackett-gamma Emission from the Immediate Accretion Flow onto the Galactic Black Hole
- The Chandra High Resolution X-ray Spectrum of Quiescent Emission from Sgr A*
- A Swift study of long-term changes in the X-ray flaring properties of Sagittarius A*
- New radiative loss curve from updates to collisional excitation in the low-density, optically thin plasmas in SPEX
- Revealing the Physical Conditions around Sgr A* using Bayesian Inference -- I. Observations and Radiative Transfer
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