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INTERACTION BETWEEN CASSIOPEIA A AND NEARBY MOLECULAR CLOUDS

机译:甲壳类和附近分子云之间的相互作用

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We present spectroscopy of the supernova remnant Cassiopeia A (Cas A) observed at infrared wavelengths from 10 to 40 μm with the Spitzer Space Telescope and at millimeter wavelengths in 12CO and 13CO J =2-1 (230 and 220 GHz) with the Heinrich Hertz Submillimeter Telescope. The IR spectra demonstrate high-velocity features toward a molecular cloud coincident with a region of bright radio continuum emission along the northern shock front of Cas A. The millimeter observations indicate that CO emission is broadened by a factor of two in some clouds toward Cas A, particularly to the south and west. We believe that these features trace interactions between the Cas A shock front and nearby molecular clouds. In addition, some of the molecular clouds that exhibit broadening in CO lie 1'-2' away from the furthest extent of the supernova remnant shock front. We propose that this material may be accelerated by ejecta with velocity significantly larger than the observed free-expansion velocity of the Cas A shock front. These observations may trace cloud interactions with fast-moving outflows such as the bipolar outflow along the southwest to northeast axis of the Cas A supernova remnant, as well as fast-moving knots seen emerging in other directions.
机译:我们用Spitzer太空望远镜在10至40μm的红外波长下以及在Heinrich Hertz的12CO和13CO J = 2-1(230和220 GHz)的毫米波波长下观察到的超新星残留仙后座A(Cas A)的光谱亚毫米望远镜。红外光谱表明,向分子云的高速特征与沿着Cas A的北激波前沿的明亮的连续无线电发射区域重合。毫米波观测表明,在向Cas A的一些云中,CO的发射增加了两倍。 ,尤其是在南部和西部。我们相信这些特征可追踪Cas A激波锋和附近分子云之间的相互作用。此外,一些在CO中展宽的分子云离超新星残余激波锋最远的距离位于1'-2'。我们建议,该材料可以通过喷射而加速,其速度明显大于观察到的Cas A冲击锋面的自由膨胀速度。这些观测结果可能会追踪云与快速流出的相互作用,例如沿着Cas A超新星残留物的西南向东北轴的双极流出,以及在其他方向出现的快速结。

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