Lebrun F, Terrier R, Bazzano A, Bélanger G, Bird A, Bouchet L, Dean A, Del Santo M, Goldwurm A, Lund N, Morand H, Parmar A, Paul J, Roques J-P, Schönfelder V, Strong A W, Ubertini P, Walter R, Winkler C
CEA-Saclay, DAPNIA/Service d'Astrophysique, F91191 Gif sur Yvette Cedex, France.
Nature. 2004 Mar 18;428(6980):293-6. doi: 10.1038/nature02407.
The Milky Way is known to be an abundant source of gamma-ray photons, now determined to be mainly diffuse in nature and resulting from interstellar processes. In the soft gamma-ray domain, point sources are expected to dominate, but the lack of sensitive high-resolution observations did not allow for a clear estimate of the contribution from such sources. Even the best imaging experiment revealed only a few point sources, accounting for about 50% of the total Galactic flux. Theoretical studies were unable to explain the remaining intense diffuse emission. Investigating the origin of the soft gamma-rays is therefore necessary to determine the dominant particle acceleration processes and to gain insights into the physical and chemical equilibrium of the interstellar medium. Here we report observations in the soft gamma-ray domain that reveal numerous compact sources. We show that these sources account for the entirety of the Milky Way's emission in soft gamma-rays, leaving at most a minor role for diffuse processes.
银河系是已知的丰富伽马射线光子源,目前确定其主要在本质上是弥散的,并且是由星际过程产生的。在软伽马射线领域,点源预计占主导地位,但缺乏灵敏的高分辨率观测使得无法清楚估计此类源的贡献。即使是最好的成像实验也仅揭示了少数几个点源,约占银河系总通量的50%。理论研究无法解释其余强烈的弥散发射。因此,研究软伽马射线的起源对于确定主要的粒子加速过程以及深入了解星际介质的物理和化学平衡是必要的。在此我们报告在软伽马射线领域的观测结果,这些观测揭示了众多致密源。我们表明,这些源占银河系软伽马射线发射的全部,使得弥散过程至多起次要作用。