Probing the evolving massive star population in Orion with kinematic and radioactive tracers
arXiv:1005.3827 · doi:10.1051/0004-6361/201014408
Abstract
We assemble a census of the most massive stars in Orion, then use stellar isochrones to estimate their masses and ages, and use these results to establish the stellar content of Orion's individual OB associations. From this, our new population synthesis code is utilized to derive the history of the emission of UV radiation and kinetic energy of the material ejected by the massive stars, and also follow the ejection of the long-lived radioactive isotopes 26Al and 60Fe. In order to estimate the precision of our method, we compare and contrast three distinct representations of the massive stars. We compare the expected outputs with observations of 26Al gamma-ray signal and the extent of the Eridanus cavity. We find an integrated kinetic energy emitted by the massive stars of 1.8(+1.5-0.4)times 10^52 erg. This number is consistent with the energy thought to be required to create the Eridanus superbubble. We also find good agreement between our model and the observed 26Al signal, estimating a mass of 5.8(+2.7-2.5) times 10^-4 Msol of 26Al in the Orion region. Our population synthesis approach is demonstrated for the Orion region to reproduce three different kinds of observable outputs from massive stars in a consistent manner: Kinetic energy as manifested in ISM excavation, ionization as manifested in free-free emission, and nucleosynthesis ejecta as manifested in radioactivity gamma-rays. The good match between our model and the observables does not argue for considerable modifications of mass loss. If clumping effects turn out to be strong, other processes would need to be identified to compensate for their impact on massive-star outputs. Our population synthesis analysis jointly treats kinematic output and the return of radioactive isotopes, which proves a powerful extension of the methodology that constrains feedback from massive stars.
Accepted for publication in A&A, 10 pages
References in corpus (14)
- The distance to the Orion Nebula
- The nucleosynthesis of Al26 and Fe60 in solar metallicity stars extending in mass from 11 to 120 Msun: the hydrostatic and explosive contributions
- The empirical metallicity dependence of the mass-loss rate of O- and early B-type stars
- Neglecting the porosity of hot-star winds can lead to underestimating mass-loss rates
- A Parallactic Distance of 389 +24/-21 parsecs to the Orion Nebula Cluster from Very Long Baseline Array Observations
- Quantitative studies of the optical and UV spectra of Galactic early B supergiants I. Fundamental parameters
- Mass loss from inhomogeneous hot star winds I. Resonance line formation in 2D models
- A Census of the Carina Nebula -- II. Energy Budget and Global Properties of the Nebulosity
- The distance to the Orion Nebula Cluster
- The brightest stars of the sigma Orionis cluster
- Using population synthesis of massive stars to study the interstellar medium near OB associations
- Supernova Propagation And Cloud Enrichment: A new model for the origin of Fe in the early solar system
- New estimates of the gamma-ray line emission of the Cygnus region from INTEGRAL/SPI observations
- The Importance of XUV Radiation as a Solution to the P V Mass Loss Rate Discrepancy in O-Stars
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- A Multiwavelength Look at Galactic Massive Star Forming Regions
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- The Galactic Al emission map as revealed by INTEGRAL/SPI
- Triggered Star Formation Inside the Shell of a Wolf-Rayet Bubble as the origin of the Solar System
- Feedback by massive stars and the emergence of superbubbles II. X-ray properties
- Generation of massive stellar black holes by rapid gas accretion in primordial dense clusters
- Multiple Star Systems in the Orion Nebula
- INTEGRAL: science highlights and future prospects
- Gas shells and magnetic fields in the Orion-Eridanus superbubble
- Orion A's complete 3D magnetic field morphology
- Energetic feedback and Al from massive stars and their supernovae in the Carina region
- Nuclear processes in Astrophysics: Recent progress
- Numerical studies on the link between radioisotopic signatures on Earth and the formation of the Local Bubble. II. Advanced modeling of interstellar 26Al, 53Mn, 60Fe, and 244Pu influxes as traces of past supernovae in the solar neighborhood
- The GALAH survey: Chemical homogeneity of the Orion complex
- Recent results in nuclear astrophysics
- Steady-state nucleosynthesis throughout the Galaxy
- Binary black hole growth by gas accretion in stellar clusters
- Observational constraints on the likelihood of Al in planet-forming environments
- Galactic Population Synthesis of Radioactive Nucleosynthesis Ejecta
- The cosmic-ray content of the Orion-Eridanus superbubble
- Radioactive isotopes in the interstellar medium
- A clustered origin for isolated massive stars
- The Al Gamma-ray Line from Massive-Star Regions
- Magnetic fields and young stellar objects in cometary cloud LDN 1616
- New insights from cosmic gamma rays
- SPI Measurements of Nucleosynthesis Gamma-Rays
- Cosmic Radioactivity and Galactic Chemical Evolution
- CoronaGraph Instrument Reference stars for Exoplanets (CorGI-REx) I. Preliminary Vetting and Implications for the Roman Coronagraph and Habitable Worlds Observatory