论文标题

W49A中的时间变量无线电重组线排放

Time-Variable Radio Recombination Line Emission in W49A

论文作者

De Pree, C. G., Wilner, D. J., Kristensen, L. E., Galván-Madrid, R., Goss, W. M., Klessen, R. S., Mac Low, M. -M., Peters, T., Robinson, A., Sloman, S., Rao, M.

论文摘要

我们向W49A恒星形成区域的中央区域的新Jansky非常大的阵列(VLA)图像分别为0 \ FARCS15(1650 au)和0 \ farcs04和0 \ farcs04(440 au),在7〜mm处的中央区域。 3.6〜cm数据揭示了超级杂技{H} {2}区域总体中的新形态学细节,以及几个以前未知和未解决的来源。特别是,源A显示了伸长的,边缘的双极裂片,表明了准直流,源E分解为三个球形组件。我们还提出了3.6厘米和7毫米的无线电重组线的VLA观察结果,以及IRAM Northern Extendered毫米阵列(NOEMA)的观测值1.2〜mm。三个最小的超级合理\ ion {H} {2}区域(来源A,B2和G2)都显示了宽阔的运动范围,带有$δ$ v $ _ {fwhm} \ gtrsim $ 40〜 km〜s $ s $^s $^{ - 1} $。多行分析表明,在校正压力扩大效应后,宽阔的线宽保持不变,表明存在超音速流。对于源G2,在3.6 cm和7毫米处的21年时间基线中的线宽发生了实质变化。在3.6厘米时,G2的线宽从31.7 $ \ pm $ 1.8 km s $^{ - 1} $ to 55.6 $ \ pm $ \ pm $ 2.7 km s $^{ - 1} $,增加$+$+$+$ 23.9 $ \ pm $ 3.4 km $ 3.4 km S $^{ - 1} $。据报道,G2源在1994年至2015年之间显示出3.6 〜cm连续通量密度的降低40 \%。该源位于非常年轻的双极流出中心附近,其可变性可能导致了这些变化。

We present new Jansky Very Large Array (VLA) images of the central region of the W49A star-forming region at 3.6~cm and at 7~mm at resolutions of 0\farcs15 (1650 au) and 0\farcs04 (440 au), respectively. The 3.6~cm data reveal new morphological detail in the ultracompact \ion{H}{2} region population, as well as several previously unknown and unresolved sources. In particular, source A shows elongated, edge-brightened, bipolar lobes, indicative of a collimated outflow, and source E is resolved into three spherical components. We also present VLA observations of radio recombination lines at 3.6~cm and 7~mm, and IRAM Northern Extended Millimeter Array (NOEMA) observations at 1.2~mm. Three of the smallest ultracompact \ion{H}{2} regions (sources A, B2 and G2) all show broad kinematic linewidths, with $Δ$V$_{FWHM}\gtrsim$40~km~s$^{-1}$. A multi-line analysis indicates that broad linewidths remain after correcting for pressure broadening effects, suggesting the presence of supersonic flows. Substantial changes in linewidth over the 21 year time baseline at both 3.6 cm and 7 mm are found for source G2. At 3.6 cm, the linewidth of G2 changed from 31.7$\pm$1.8 km s$^{-1}$ to 55.6$\pm$2.7 km s$^{-1}$, an increase of $+$23.9$\pm$3.4 km s$^{-1}$. The G2 source was previously reported to have shown a 3.6~cm continuum flux density decrease of 40\% between 1994 and 2015. This source sits near the center of a very young bipolar outflow whose variability may have produced these changes.

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