论文标题

NGC 253的Starburst驱动流出的X射线特性

X-ray Properties of NGC 253's Starburst-Driven Outflow

论文作者

Lopez, Sebastian, Lopez, Laura A., Nguyen, Dustin D., Thompson, Todd A., Mathur, Smita, Bolatto, Alberto D., Vulic, Neven, Sardone, Amy

论文摘要

我们从$ \ $ \ $ 365〜 ks观测值分析图像和光谱数据,从附近的{\ it chandra} X射线观测值分析,即X射线观测值,即边缘的Starburst Galaxy NGC 253,以限制流出阶段的热阶段的特性。我们将分析集中在流出的$ -1.1至$+$ 0.63 kpc区域,并定义了几个用于光谱提取的区域,以确定最佳拟合温度和金属丰度。我们发现,中央$ \ sim中的温度和电子密度峰值$ \ sim $ 250 PC的流出区域,并随距离而降低。这些温度和密度曲线与绝热球形膨胀的Starburst风模型存在分歧,并暗示存在其他物理,例如质量载荷和非球形流出几何形状。我们衍生的温度和密度在核区域产生了很少的米尔冷却时间,这可能意味着热气可以在沿次要轴逸出时进行散装辐射冷却。我们的金属丰度O,NE,Mg,Si,S和Fe在中央区域的所有峰值,并随沿流出距离而降低,除了NE保持平坦的分布外。金属丰度表明在Starburst地区以外的稀释量很大。我们还发现对北部流出的质量流出速率的估计值为$ 2.8 \:m _ {\ odot}/\ rm {yr} $,$ 3.2 \:M _ {\ odot}/\ rm {yr {yr {yr {yr} $。此外,我们检测到收费交易所的排放,发现它在流出的中部和南部地区的X射线排放量($ 0.5-7 $ keV)具有显着贡献($ 20-42 $ \%)。

We analyze image and spectral data from $\approx$365~ks of observations from the {\it Chandra} X-ray Observatory of the nearby, edge-on starburst galaxy NGC 253 to constrain properties of the hot phase of the outflow. We focus our analysis on the $-$1.1 to $+$0.63 kpc region of the outflow and define several regions for spectral extraction where we determine best-fit temperatures and metal abundances. We find that the temperatures and electron densities peak in the central $\sim$250 pc region of the outflow and decrease with distance. These temperature and density profiles are in disagreement with an adiabatic spherically expanding starburst wind model and suggest the presence of additional physics such as mass loading and non-spherical outflow geometry. Our derived temperatures and densities yield few-Myr cooling times in the nuclear region, which may imply that the hot gas can undergo bulk radiative cooling as it escapes along the minor axis. Our metal abundances of O, Ne, Mg, Si, S, and Fe all peak in the central region and decrease with distance along the outflow, with the exception of Ne which maintains a flat distribution. The metal abundances indicate significant dilution outside of the starburst region. We also find estimates on the mass outflow rates which are $2.8\:M_{\odot}/\rm{yr}$ in the northern outflow and $3.2\:M_{\odot}/\rm{yr}$ in the southern outflow. Additionally, we detect emission from charge exchange and find it has a significant contribution ($20-42$\%) to the total broad-band ($0.5-7$ keV) X-ray emission in the central and southern regions of the outflow.

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