English

Fermi Large Area Telescope Observations of the Monoceros Loop Supernova Remnant

High Energy Astrophysical Phenomena 2017-02-22 v1

Abstract

We present an analysis of the gamma-ray measurements by the Large Area Telescope onboard the \textit{Fermi Gamma-ray Space Telescope} in the region of the supernova remnant~(SNR) Monoceros Loop~(G205.5++0.5). The brightest gamma-ray peak is spatially correlated with the Rosette Nebula, which is a molecular cloud complex adjacent to the southeast edge of the SNR. After subtraction of this emission by spatial modeling, the gamma-ray emission from the SNR emerges, which is extended and fit by a Gaussian spatial template. The gamma-ray spectra are significantly better reproduced by a curved shape than a simple power law. The luminosities between 0.2--300~GeV are \sim~4×10344 \times 10^{34}~erg~s1^{-1} for the SNR and \sim~3×10343 \times 10^{34}~erg~s1^{-1} for the Rosette Nebula, respectively. We argue that the gamma rays likely originate from the interactions of particles accelerated in the SNR. The decay of neutral pions produced in nucleon-nucleon interactions of accelerated hadrons with interstellar gas provides a reasonable explanation for the gamma-ray emission of both the Rosette Nebula and the Monoceros SNR.

Keywords

Cite

@article{arxiv.1608.06380,
  title  = {Fermi Large Area Telescope Observations of the Monoceros Loop Supernova Remnant},
  author = {H. Katagiri and S. Sugiyama and M. Ackermann and J. Ballet and J. M. Casandjian and Y. Hanabata and J. W. Hewitt and M. Kerr and H. Kubo and M. Lemoine-Goumard and P. S. Ray},
  journal= {arXiv preprint arXiv:1608.06380},
  year   = {2017}
}

Comments

Corresponding authors: H. Katagiri and S. Sugiyama