首页> 外文OA文献 >Observations of Sagittarius A* during the pericenter passage of the G2 object with MAGIC
【2h】

Observations of Sagittarius A* during the pericenter passage of the G2 object with MAGIC

机译:用MAGIC在G2物体的圆心通过过程中的射手座A *的观察

摘要

Context. We present the results of a multi-year monitoring campaign of the Galactic center (GC) with the MAGIC telescopes. These observations were primarily motivated by reports that a putative gas cloud (G2) would be passing in close proximity to the super-massive black hole (SMBH), associated with Sagittarius A*, located at the center of our galaxy. This event was expected to give astronomers a unique chance to study the effect of in-falling matter on the broad-band emission of a SMBH. Aims. We search for potential flaring emission of very-high-energy (VHE; >= 100 GeV) gamma rays from the direction of the SMBH at the GC due to the passage of the G2 object. Using these data we also study the morphology of this complex region. Methods. We observed the GC region with the MAGIC Imaging Atmospheric Cherenkov Telescopes during the period 2012-2015, collecting 67 h of good-quality data. In addition to a search for variability in the flux and spectral shape of the GC gamma-ray source, we use a point-source subtraction technique to remove the known gamma-ray emitters located around the GC in order to reveal the TeV morphology of the extended emission inside that region. Results. No effect of the G2 object on the VHE gamma-ray emission from the GC was detected during the 4 yr observation campaign. We confirm previous measurements of the VHE spectrum of Sagittarius A*, and do not detect any significant variability of the emission from the source. Furthermore, the known VHE gamma-ray emitter at the location of the supernova remnant G0.9+0.1 was detected, as well as the recently discovered VHE source close to the GG radio arc.
机译:上下文。我们介绍了使用MAGIC望远镜对银河系中心(GC)进行多年监视的结果。这些观察主要是由于有报道称,假定的气体云(G2)将通过与位于我们银河系中心的人马座A *相关的​​超大质量黑洞(SMBH)的附近。预计该事件将为天文学家提供一个独特的机会,以研究落入物质对SMBH宽带发射的影响。目的由于G2对象的通过,我们从GC的SMBH方向搜索了非常高能量(VHE;> = 100 GeV)的潜在耀斑发射。使用这些数据,我们还研究了这个复杂区域的形态。方法。我们在2012-2015年期间使用MAGIC成像大气压Cherenkov望远镜观察了GC区域,收集了67小时的高质量数据。除了寻找GC伽马射线源的通量和光谱形状的可变性之外,我们还使用点源减法技术去除了位于GC周围的已知伽马射线发射器,以揭示GC的TeV形态。在该区域内扩展了发射。结果。在4年的观察运动中,未检测到G2对象对GC发射的VHE伽马射线的影响。我们确认了先前对射手座A *的VHE光谱的测量,并且未检测到源辐射的任何明显变化。此外,还检测到了位于超新星残骸G0.9 + 0.1处的已知VHE伽马射线发射器,以及最近发现的位于GG无线电弧附近的VHE源。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号