论文标题

对猎户座最年轻的原始恒星的流出和插入的最高调查

An APEX survey of outflow and infall toward the youngest protostars in Orion

论文作者

Nagy, Z., Menechella, A., Megeath, S. T., Tobin, J. J., Booker, J. J., Fischer, W. J., Manoj, P., Stanke, T., Stutz, A., Wyrowski, F.

论文摘要

我们的目的是表征Herschel空间天文台首次鉴定的猎户座中早期0阶段低质量原始物质样本的流出特性。我们还寻找关键分子线中的输入的特征。 Co $ j $ = 3-2和$ j $ = 4-3幅地图,使用Atacama Pathfinder实验(APEX)望远镜获得了16个非常年轻的0级Protostars。我们搜索数据的翼,指示流出并计算流出的质量,速度和动态时间。我们使用其他HCO $^+$,H $^{13} $ CO $^+$,以及NH $ _3 $行来寻找对原始恒定的签名。我们根据CO $ j $ = 3-2和$ J $ = 4-3的线强度估计流出质量,部队和质量减少率,对于8个来源,可检测到的流出。我们得出了没有清晰流出检测的源流出质量和力量的上限。清除流出检测的来源的总流出质量在0.03至0.16 $ m_ \ odot $之间,co $ j $ = 3-2,范围在0.02至0.02至0.10 $ m_ \ odot $之间,co $ j $ j $ = 4-3。流出力在$ 1.57 \ times10^{ - 4} $和$ 1.16 \ times10^{ - 3} $ $ m_ \ odot $ km s $ s $ s $ s $ s $^{ - 1} $ yr $^{ - 1} $ for co $ $ j $ = 3-2和范围内,范围为$ 1.14 \ times10^$ and Times10^$ 4} $ 6.92 \ times10^{ - 4} $ $ m_ \ odot $ km s $ s $^{ - 1} $ yr $^{ - 1} $ for co $ j $ = 4-3。与H $^{13} $ co $^+$或NH $ _3 $相比,我们的样本中的九个质子显示了不对称的线配置文件。我们样品中原恒星的流出力显示与降压光度的亮度无关,这与一些早期研究对其他0类原子恒定的研究不同。具有检测到的流出源的派生出流力类似于其他源的流出力(较大的进化),这表明流出在0类阶段中很快发展。

We aim to characterize the outflow properties of a sample of early Class 0 phase low-mass protostars in Orion first identified by the Herschel Space Observatory. We also look for signatures of infall in key molecular lines. CO $J$=3-2 and $J$=4-3 maps toward 16 very young Class 0 protostars were obtained using the Atacama Pathfinder EXperiment (APEX) telescope. We search the data for line wings indicative of outflows and calculate masses, velocities, and dynamical times for the outflows. We use additional HCO$^+$, H$^{13}$CO$^+$, and NH$_3$ lines to look for infall signatures toward the protostars. We estimate the outflow masses, forces, and mass-loss rates based on the CO $J$=3-2 and $J$=4-3 line intensities for 8 sources with detected outflows. We derive upper limits for the outflow masses and forces of sources without clear outflow detections. The total outflow masses for the sources with clear outflow detections are in the range between 0.03 and 0.16 $M_\odot$ for CO $J$=3-2, and in the range between 0.02 and 0.10 $M_\odot$ for CO $J$=4-3. The outflow forces are in the range between $1.57\times10^{-4}$ and $1.16\times10^{-3}$ $M_\odot$ km s$^{-1}$ yr$^{-1}$ for CO $J$=3-2 and in the range between $1.14\times10^{-4}$ and $6.92\times10^{-4}$ $M_\odot$ km s$^{-1}$ yr$^{-1}$ for CO $J$=4-3. Nine protostars in our sample show asymmetric line profiles indicative of infall in HCO$^+$, compared to H$^{13}$CO$^+$ or NH$_3$. The outflow forces of the protostars in our sample show no correlation with the bolometric luminosity, unlike those found by some earlier studies for other Class 0 protostars. The derived outflow forces for the sources with detected outflows are similar to those found for other - more evolved - Class 0 protostars, suggesting that outflows develop quickly in the Class 0 phase.

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