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首页> 外文期刊>The Astrophysical journal >Three New Supernova Remnant OH Masers Near the Galactic Center: Evidence for Large-Scale Maser Emission from Supernova Remnants
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Three New Supernova Remnant OH Masers Near the Galactic Center: Evidence for Large-Scale Maser Emission from Supernova Remnants

机译:银河中心附近的三个新的超新星残余OH Masers:超新星残余产生的大规模Maser排放的证据

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A survey of the inner 8°×1° of the Galactic plane toward the Galactic center has been carried out at the 1720 MHz transition of the OH molecule using the VLA in its D configuration with a resolution of ≈70''×45''. The detection of compact 1720 MHz OH masers associated with three supernova remnants G357.7+0.3, G1.13-0.1 (Sgr D), and G1.4-0.1 as well as new extended maser line emission from G357.7+0.3 and G357.7-0.1 (the Tornado Nebula) were then followed up by A-array observations with spectral and spatial resolutions of 0.3 km s-1 and ≈3''×2'', respectively. The 1720 MHz OH maser line emission is considered to be a powerful shock diagnostic and is collisionally pumped by H2 molecules at the site where C-type supernova shocks drive into adjacent molecular clouds. The new observations show clear evidence of extended features coincident with compact and bright masers, the best example of which is a coherent feature over a scale of about 20 pc surrounding the shell of the SNR G357.7+0.3. We argue that this remarkable feature is an OH maser and is physically associated with the remnant. This implies that the ambient molecular cloud is uniform in its density and temperature with a restricted range of pumping conditions and survives the passage of a large-scale shock front.
机译:已在OH分子的1720 MHz跃迁上使用DLA的VLA分辨率为≈70''×45''的VLA对银河平面向银河中心的内部8°×1°进行了测量。探测到与三个超新星残余G357.7 + 0.3,G1.13-0.1(Sgr D)和G1.4-0.1相关的紧凑型1720 MHz OH maser,以及来自G357.7 + 0.3和然后,对G357.7-0.1(龙卷风星云)进行A阵列观测,其光谱和空间分辨率分别为0.3 km s-1和≈3''×2''。 1720 MHz OH maser线发射被认为是强大的震荡诊断工具,并且在C型超新星震荡驱动进入相邻分子云的位置被H2分子碰撞泵浦。新的观测结果清楚地证明了扩展特征与紧凑而明亮的maser吻合,其中最好的例子是在信噪比G357.7 + 0.3的外壳周围约20 pc的范围内具有相干特征。我们认为,这一显着特征是OH maser,并且在物理上与残余物相关。这意味着周围分子云的密度和温度是均匀的,并且泵送条件的范围有限,并且可以承受大规模冲击锋面的通过。

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