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首页> 外文期刊>The Astrophysical journal >Probing Inward Motions in Starless Cores Using the HCN(J = 1-0) Hyperfine Transitions: A Pointing Survey toward Central Regions
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Probing Inward Motions in Starless Cores Using the HCN(J = 1-0) Hyperfine Transitions: A Pointing Survey toward Central Regions

机译:使用HCN(J = 1-0)超精细跃迁探测无星核的向内运动:指向中部地区的指向性调查

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摘要

We have carried out a survey toward the central regions of 85 starless cores in HCN(J = 1-0) to study inward motions in the cores. Sixty-four cores were detected with HCN lines. The infall asymmetry in the HCN spectra is found to be more prevalent, and more prominent than in any other previously used infall tracers such as CS(J = 2-1), DCO+(J = 2-1), and N2H+(J = 1-0). We have found a close relation between the intensities of the HCN and N2H+ lines. This implies that the HCN is not very depleted in the central regions of the cores. In some cores, the HCN spectra show different signs of asymmetry than other molecular lines. A few cores show various signs of asymmetry in individual HCN hyperfine lines. The distribution of the velocity shift δV of the HCN profiles with respect to the systemic velocity of the optically thin tracer is found to be more shifted toward the bluer side than those of other infall tracers, indicating that the HCN traces inward motions more frequently. The δV distribution of each HCN hyperfine line for all sources is similar. Moreover, the δV values obtained from different HCN hyperfine lines for each source are nearly similar. These may mean that most starless cores are in similar kinematic states across the layers of the cores. We identify 17 infall candidates using all available indicators such as the velocity shift δV and the blue-to-red peak intensity ratio of double-peaked profiles for HCN(J = 1-0), CS(J = 2-1), CS(J = 3-2), DCO+(J = 2-1), and N2H+(J = 1-0). Four of them, L63, L492, L694-2, and L1197, are found to show a higher blue-to-red ratio in the HCN hyperfine line along the lower opacity, suggesting that infall speed becomes higher toward the center.
机译:我们对HCN(J = 1-0)中85个无星核的中心区域进行了一项调查,以研究这些核的向内运动。使用HCN线检测到64个核心。发现HCN光谱中的入场不对称性比以前使用的任何其他入场示踪剂(例如CS(J = 2-1),DCO +(J = 2-1)和N2H +(J = 1-0)。我们发现HCN和N2H +线的强度之间存在密切关系。这意味着在核心的中心区域中,HCN并不是非常耗竭。在某些核心中,HCN光谱显示出与其他分子线不同的不对称迹象。一些核心在各个HCN超细线中显示出各种不对称迹象。发现HCN轮廓的速度偏移δV相对于光学细示踪剂的系统速度的分布比其他落入示踪剂的更向蓝侧偏移,这表明HCN追踪向内运动的频率更高。所有来源的每条HCN超细线的δV分布都相似。此外,从每个源的不同HCN超细线获得的δV值几乎相似。这可能意味着大多数无星核在整个核层之间处于相似的运动状态。我们使用所有可用的指标(例如速度偏移δV和HCN(J = 1-0),CS(J = 2-1),CS的双峰轮廓的蓝红峰强度比)来识别17个入场候选者(J = 3-2),DCO +(J = 2-1)和N2H +(J = 1-0)。发现其中四个L63,L492,L694-2和L1197沿着较低的不透明度在HCN超细线中显示出较高的蓝红比,这表明坠落速度朝中心方向变高。

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