Eta Carinae with Fermi-LAT: Two full orbits and the third periastron
arXiv:2109.05950 · doi:10.1051/0004-6361/202140451
Abstract
Context. Colliding-wind binaries are massive stellar systems featuring strong, interacting winds. These binaries may be actual particle accelerators, making them variable gamma-ray sources due to changes in the wind collision region along the orbit. However, only two of these massive stellar binary systems have been identified as high-energy sources. The first and archetypical system of this class is Eta Carinae, a bright gamma-ray source with orbital variability peaking around its periastron passage. Aims. The origin of the high energy emission in Eta Carinae is still unclear, with both lepto-hadronic and hadronic scenarios being under discussion. Moreover, the gamma-ray emission seemed to differ between the two periastrons previously observed with the Fermi Large Area Telescope. Continuing observations might provide highly valuable information for the understanding of the emission mechanisms in this system. Methods. We have used almost 12 years of data from the Fermi Large Area Telescope. We studied both low and high energy components, searching for differences and similarities between both orbits, and made use of this large dataset to search for emission from nearby colliding-wind binaries. Results. We show how the energy component above 10 GeV of Eta Carinae peaks months before the 2014 periastron, while the 2020 periastron is the brightest to date. Additionally, upper limits are provided for the high-energy emission in other particle-accelerating colliding-wind systems. Conclusions. Current gamma-ray observations of Eta Carinae strongly suggest that the wind collision region of this system is perturbed from orbit to orbit affecting particle transport within the shock.
8 pages, 8 figures, 3 tables. Accepted for publication in Astronomy and Astrophysics
References in corpus (15)
- Detection of Gamma-ray Emission from the Eta-Carinae Region
- Non-thermal emission processes in massive binaries
- Hard X-ray emission from Eta Carinae
- Non-thermal X-rays from Colliding Wind Shock Acceleration in the Massive Binary Eta Carinae
- The first full orbit of Eta Carinae seen by Fermi
- A close encounter of the massive kind
- The Second AGILE Catalog of Gamma-Ray Sources
- Simulating three-dimensional nonthermal high-energy photon emission in colliding-wind binaries
- On the origin of γ-ray emission in η Carina
- Catalog of Long-Term Transient Sources in the First 10 Years of Fermi-LAT Data
- A radio-map of the colliding winds in the very massive binary system HD 93129A
- Long-term soft and hard X-ray investigation of the colliding wind WN+O binary WR 25
- A lepto-hadronic model of gamma rays from the Eta Carinae and prospects for neutrino telescopes
- Investigation of the WR 11 field at decimeter wavelengths
- The high-energy emission from HD~93129A near periastron
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- Diffuse -ray emission around the massive star forming region of Carina Nebula Complex
- Inverse Compton cooling of thermal plasma in colliding-wind binaries
- Probing cosmic ray escape from η Carinae
- Detection of very-high-energy gamma-ray emission from Eta Carinae during its 2020 periastron passage
- Limits on the non-thermal emission of the WR-WR system Apep
- Exploring the nature of Galactic unassociated sources detected by the Fermi-LAT