English

The Galactic $^{26}$Al emission map as revealed by INTEGRAL/SPI

High Energy Astrophysical Phenomena 2015-06-23 v1

Abstract

Diffuse emission is often challenging since it is undetectable by most instruments, which are generally dedicated to point-source studies. The 26^{26}Al emission is a good illustration: the only available 26^{26}Al map to date has been released, more than fifteen years ago, thanks to the COMPTEL instrument. However, at the present time, the SPI spectrometer aboard the INTEGRAL mission offers a unique opportunity to enrich this first result. In this paper, 2 ×\times 108^8 s of data accumulated between 2003 and 2013 are used to perform a dedicated analysis, aiming to deeply investigate the spatial morphology of the 26^{26}Al emission. The data are first compared with several sky maps based on observations at various wavelengths to model the 26^{26}Al distribution throughout the Galaxy. For most of the distribution models, the inner Galaxy flux is compatible with a value of 3.3×\times 104^{-4} ph.cm2^{-2}.s1^{-1} while the preferred template maps correspond to young stellar components such as core-collapse supernovae, Wolf-Rayet and massive AGB stars. To get more details about this emission, an image reconstruction is performed using an algorithm based on the maximum-entropy method. In addition to the inner Galaxy emission, several excesses suggest that some sites of emission are linked to the spiral arms structure. Lastly, an estimation of the 60^{60}Fe line flux, assuming a spatial distribution similar to 26^{26}Al line emission, results in a 60^{60}Fe\ to 26^{26}Al ratio around 0.14, which agrees with the most recent studies and with the SN explosion model predictions.

Keywords

Cite

@article{arxiv.1501.05247,
  title  = {The Galactic $^{26}$Al emission map as revealed by INTEGRAL/SPI},
  author = {Laurent Bouchet and Elisabeth Jourdain and Jean-Pierre Roques},
  journal= {arXiv preprint arXiv:1501.05247},
  year   = {2015}
}

Comments

12 pages, 9 figures, 3 tables. Accepted for publication in The Astrophysical Journal