论文标题
CL 0217+70的Nustar和Chandra视图及其讲述的电台Halo
The NuSTAR and Chandra view of CL 0217+70 and Its Tell-Tale Radio Halo
论文作者
论文摘要
星系集群的合并是宇宙中最有活力的事件,驱动冲击和冷锋,产生湍流,并加速产生无线电光环和文物的颗粒。 Galaxy Cluster CL 0217+70是一场了不起的后期合并,具有双重外围无线电遗物和巨型无线电光环。 Chandra研究检测到与光环中无线电特征相对应的表面亮度边缘。在这项工作中,我们使用光谱成像方法对该集群进行了研究。发现全球温度为KT = 9.1 KEV。我们设置了〜2.7x10^(-12)erg s^(-1)cm^(-2)的IC通量上限,并设置为0.08 microg的磁场的下限。我们本地的IC搜索表明,IC发射可能在无线电光环发射的郊区以及在群集的0.6 R500之内的郊外/接近冲击区域中产生重大贡献。我们在温度图中检测到一个“热点”功能,一致是表面亮度边缘,但是我们对其起源的研究尚无定论。如果“热点”是冲击的下游,我们将Kt> 21 keV的下限设置为等离子体,与M〜2相对应。我们在0.5 R500之内发现了三个冲击战线。集群中心内的多个弱冲击暗示了正在进行的合并活动,并继续喂养巨型无线电光环。 Cl 0217+70是唯一以多种形式托管这些次要冲击的示例。
Mergers of galaxy clusters are the most energetic events in the universe, driving shock and cold fronts, generating turbulence, and accelerating particles that create radio halos and relics. The galaxy cluster CL 0217+70 is a remarkable late stage merger, with a double peripheral radio relic and a giant radio halo. A Chandra study detects surface brightness edges that correspond to radio features within the halo. In this work, we present a study of this cluster with NuSTAR and Chandra data using spectro-imaging methods. The global temperature is found to be kT = 9.1 keV. We set an upper limit for the IC flux of ~2.7x10^(-12) erg s^(-1) cm^(-2), and a lower limit to the magnetic field of 0.08 microG. Our local IC search revealed a possibility that IC emission may have a significant contribution at the outskirts of a radio halo emission and on/near shock regions within ~0.6 r500 of clusters. We detected a "hot spot" feature in our temperature map coincident a surface brightness edge, but our investigation on its origin is inconclusive. If the "hot spot" is the downstream of a shock, we set a lower limit of kT > 21 keV to the plasma, that corresponds to M~2. We found three shock fronts within 0.5 r500. Multiple weak shocks within the cluster center hint at an ongoing merger activity and continued feeding of the giant radio halo. CL 0217+70 is the only example hosting these secondary shocks in multiple form.