论文标题
Cygnus循环I中的辐射冲击波中的湍流和能量颗粒:冲击特性
Turbulence and Energetic Particles in Radiative Shock Waves in the Cygnus Loop I: Shock Properties
论文作者
论文摘要
我们已经获得了Cygnus循环中冲击波的一组连续的长片光谱,以研究其结构,这远非1D模型所预测的形态。来自哈勃空间望远镜图像的适当运动与已知的Cygnus环路相结合提供了准确的冲击速度。较早的冲击光谱分析估计了冲击速度,震后密度,温度和元素丰度。在本文中,我们确定了更多的电击参数:更准确的冲击速度,RAM压力,密度,压缩比,尘埃破坏效率,磁场强度和冷却区域的涡度。从衍生的休克特性中,我们估算了无线电和伽马射线中旋转衰减发射中同步加速器发射的发射。如果我们像Van der Laan机制一样对环境宇宙射线进行简单的绝热压缩,则两者都与观察结果一致。我们还发现,尽管形态远非1D模型所预测的形态,并且线比在一个点之间差异很大,但平均频谱与1D冲击模型相当匹配,而1D冲击模型则与测得的适当运动得出的冲击速度相当。随后的论文将分析冲击后面冷却区域的湍流发展。
We have obtained a contiguous set of long-slit spectra of a shock wave in the Cygnus Loop to investigate its structure, which is far from the morphology predicted by 1D models. Proper motions from Hubble Space Telescope images combined with the known distance to the Cygnus Loop provide an accurate shock speed. Earlier analyses of shock spectra estimated the shock speed, postshock density, temperature, and elemental abundances. In this paper we determine several more shock parameters: a more accurate shock speed, ram pressure, density, compression ratio, dust destruction efficiency, magnetic field strength, and vorticity in the cooling region. From the derived shock properties we estimate the emissivities of synchrotron emission in the radio and pion decay emission in the gamma rays. Both are consistent with the observations if we assume simple adiabatic compression of ambient cosmic rays as in the van der Laan mechanism. We also find that, although the morphology is far from that predicted by 1D models and the line ratios vary dramatically from point to point, the average spectrum is matched reasonably well by 1D shock models with the shock speed derived from the measured proper motion. A subsequent paper will analyze the development of turbulence in the cooling zone behind the shock.