论文标题

X射线光谱分析与Chandra的亚弧形尺度上的Pictor A中的射流终止冲击分析

X-ray Spectral Analysis of the Jet Termination Shock in Pictor A on Sub-Arcsecond Scales with Chandra

论文作者

Thimmappa, R., Stawarz, L., Neilsen, J., Ostrowski, M., Reville, B.

论文摘要

在高功率射电星系和类星体的延长无线电叶边缘观察到的热点标志着轻度相关的终止冲击的位置,其中射流体积动能被转换为射流颗粒的内部能量。这些是唯一可以在电磁光谱的各种波长下直接解析的天体物理系统。由于其角度的尺寸和高表面亮度的组合,在这方面,A射线星系Pictor \ a的西部热点是一个异常好的目标。在我们以前的工作中,经过仔细的{\ it chandra}图像反卷积之后,我们将此热点解析为垂直于射流轴的类似磁盘的特征,并将其确定为射流终端冲击的前部。我们主张观察到的X射线光子的同步子来源,这暗示了10--100 \,TEV的最大电子能量。在这里,我们提出了该分析的后续措施,特别提出了一种新的方法,用于用亚弧形分辨率来约束X射线连续发射的形状。该方法基于{\ it chandra}硬度图分析,使用在软X射线频带中分别去卷合图。这样,我们发现冲击的硬度比有一个系统的,但具有统计学意义的梯度,因此,隐含的电子能量指数的范围从冲击阵线的$ s \ s \ leq 2.2 $到接近下游的$ s> 2.7 $。我们讨论了获得的结果对在轻度相关的冲击下对粒子加速的一般理解的含义。

Hotspots observed at the edges of extended radio lobes in high-power radio galaxies and quasars mark the position of mildly-relativistic termination shock, where the jet bulk kinetic energy is converted to the internal energy of the jet particles. These are the only astrophysical systems where mildly-relativistic shocks can be directly resolved at various wavelengths of the electromagnetic spectrum. The western hotspot in the radio galaxy Pictor\,A is an exceptionally good target in this respect, due to the combination of its angular size and high surface brightness. In our previous work, after a careful {\it Chandra} image deconvolution, we resolved this hotspot into a disk-like feature perpendicular to the jet axis, and identified this as the front of the jet termination shock. We argued for a synchrotron origin of the observed X-ray photons, which implied maximum electron energies of the order of 10--100\,TeV. Here we present a follow-up on that analysis, proposing in particular a novel method for constraining the shape of the X-ray continuum emission with sub-arcsec resolution. The method is based on a {\it Chandra} hardness map analysis, using separately de-convolved maps in the soft and hard X-ray bands. In this way, we have found there is a systematic, yet statistically significant gradient in the hardness ratio across the shock, such that the implied electron energy index ranges from $s\leq 2.2$ at the shock front to $s> 2.7$ in the near downstream. We discuss the implications of the obtained results for a general understanding of particle acceleration at mildly-relativistic shocks.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源