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Submillimeter Wave Astronomy Satellite Mapping Observations of Water Vapor around Sagittarius B2

机译:射手座B2周围水汽的亚毫米波天文学卫星测绘观测

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Observations of the 110-101 556.936 GHz transition of ortho-water with the Submillimeter Wave Astronomy Satellite have revealed the presence of widespread emission and absorption by water vapor around the strong submillimeter continuum source Sagittarius B2. An incompletely sampled spectral line map of a region of size 26' × 19' around Sgr B2 reveals three noteworthy features. First, absorption by foreground water vapor is detectable at local standard of rest (LSR) velocities in the range -100 to 0 km s-1 at almost every observed position. Second, spatially extended emission by water is detectable at LSR velocities in the range 80-120 km s-1 at almost every observed position. This emission is attributable to the 180 pc molecular ring identified from previous observations of CO. The typical peak antenna temperature of 0.075 K for this component implies a typical water abundance of (1.2-8) × 10-6 relative to H2. Third, strong absorption by water is observed within 5' of Sgr B2 at LSR velocities in the range 60-82 km s-1. An analysis of this absorption yields a HO abundance ~(2-4) × 10-7 relative to H2 if the absorbing water vapor is located within the core of Sgr B2 itself, or, alternatively, a water column density of ~(2.5-4) × 1016 cm-2 if the water absorption originates in the warm, foreground layer of gas proposed previously as the origin of ammonia absorption observed toward Sgr B2.
机译:利用亚毫米波天文学卫星对原水的110-101 556.936 GHz过渡进行的观测表明,在强大的亚毫米连续谱源人马座B2周围存在水蒸气的广泛发射和吸收。围绕Sgr B2的大小为26'×19'的区域的不完全采样的光谱线图显示了三个值得注意的特征。首先,在几乎每个观察到的位置上,在-100至0 km s -1的局部静止(LSR)速度下,都可以检测到前景水蒸气的吸收。其次,在几乎每个观测位置,LSR速度在80-120 km s-1范围内都可以检测到水在空间上的扩展排放。该辐射归因于从先前的CO观测中鉴定出的180 pc分子环。该组件的典型天线峰值温度为0.075 K,意味着相对于H2的典型水丰度为(1.2-8)×10-6。第三,在LSR速度为60-82 km s-1的范围内,在Sgr B2的5'内观察到了强水吸收。如果吸收的水蒸气位于Sgr B2本身的核心内,或者作为替代,水柱密度约为(2.5--),则对该吸收的分析会产生相对于H2的HO丰度〜(2-4)×10-7。 4)×1016 cm-2,如果吸水起源于先前提议为向Sgr B2观察到的氨吸收起点的温暖的前景气体层。

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