论文标题
SS 433/W50西部区域的空间分辨研究与Chandra:X射线结构和非热发射的光谱变化
Spatially resolved study of the SS 433/W50 west region with Chandra: X-ray structure and spectral variation of non-thermal emission
论文作者
论文摘要
X射线二进制SS 433嵌入了W50星云(或超新星残留W50)中,显示出具有轻度相对论速度的双极射流,并延伸到东方和向西延伸至parsecs的尺度。先前的X射线观测结果显示,沿着射流预动力轴的双叶,其中包含由同步加速器辐射支配的紧凑的明亮结,这为该系统提供了电子加速度的证据。该系统中的颗粒加速度通过最近检测到的伽马射线的能量至少至少25 TEV来证实。为了进一步阐明SS 433/W50中的结和粒子加速度位点的起源,我们在这里报告了其西部叶的详细,空间分辨的X射线光谱,其西部带有Chandra。我们检测到沿喷射进动轴的同步加速器发射,以及更空间扩展的光学薄热发射。在以前已知的结W1和W2之间,我们发现了另一个同步结,我们称之为W1.5。我们发现SS 433和最内向的X射线结(W1)之间没有明显的同步发射,这表明电子仅在W1处开始加速。 X射线光谱从W1到W2逐渐陡峭,然后迅速在W2外面迅速陡峭。与考虑电子传输和沿射流冷却的模型相比,该结果表明W2中的磁场大大增强,这也解释了其亮度。我们讨论了增强的W2磁场以及场景的可能起源,以解释其他两个节。
The X-ray binary SS 433, embedded in the W50 nebula (or supernova remnant W50), shows bipolar jets that are ejected with mildly relativistic velocities, and extend toward the east and west out to scales of tens of parsecs. Previous X-ray observations revealed twin lobes along the jet precession axis that contain compact bright knots dominated by synchrotron radiation, which provide evidence of electron acceleration in this system. Particle acceleration in this system is substantiated by the recently detected gamma rays with energies up to at least 25 TeV. To further elucidate the origin of the knots and particle acceleration sites in SS 433/W50, we report here on detailed, spatially resolved X-ray spectroscopy of its western lobe with Chandra. We detect synchrotron emission along the jet precession axis, as well as optically thin thermal emission that is more spatially extended. Between the two previously known knots, w1 and w2, we discover another synchrotron knot, which we call w1.5. We find no significant synchrotron emission between SS 433 and the innermost X-ray knot (w1), suggesting that electrons only begin to be accelerated at w1. The X-ray spectra become gradually steeper from w1 to w2, and then rapidly so immediately outside of w2. Comparing with a model taking into account electron transport and cooling along the jet, this result indicates that the magnetic field in w2 is substantially enhanced, which also explains its brightness. We discuss possible origins of the enhanced magnetic field of w2 as well as scenarios to explain the other two knots.