Protostellar Outflows at the EarliesT Stages (POETS)

IF 5.8 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Astronomy & Astrophysics Pub Date : 2025-04-01 DOI:10.1051/0004-6361/202553842
L. Moscadelli, C. Goddi, T. Hirota, A. Sanna
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Abstract

Context. The hyper-compact (HC) HII region phase of a newly born massive star is presently poorly understood, particularly in relation to how the enhanced UV radiation impacts the kinematics of the surrounding gas and affects mass accretion.Aims. This article focuses on NGC 7538 IRS1, one of the most luminous and studied HC HII regions in the northern hemisphere. Our aim is to identify the young stellar objects (YSOs) embedded within the ionized gas and study their nearby kinematic structures. This work expands on a recent survey called Protostellar Outflows at the EarliesT Stages (POETS), which has been devoted to studying young outflow emission on scales of 10–100 au near luminous YSOs, before they start photoionizing the surrounding medium.Methods. We carried out multi-epoch Very Long Baseline Array (VLBA) observations of the 22 GHz water masers toward NGC 7538 IRS1 to measure the maser 3D velocities, which, following POETS’ findings, are reliable tracers of the protostellar winds. Recently, we reobserved the water masers in NGC 7538 IRS1 with sensitive global very long baseline interferometry (VLBI) observations to map weaker maser emission and also study the maser time variability.Results. Our study confirms the presence of two embedded YSOs, IRS1a and IRS1b, at the center of the two linear distributions of 6.7 GHz methanol masers observed in the southern and northern cores of the HC HII region, which have been previously interpreted in terms of edge-on rotating disks. The water masers trace an extended (≥200 au) stationary shock front adjacent to the inner portion of the disk around IRS1a. This shock front corresponds to the edge of the southern tip of the ionized core and might be produced by the interaction of the disk wind ejected from IRS1a with the infalling envelope. The water masers closer to IRS1b follow the same local standard of rest (LSR) velocity (VLSR) pattern of the 6.7 GHz masers rotating in the disk, but the direction and amplitude of the water maser proper motions are inconsistent with rotation. We propose that these water masers are tracing a photo-evaporated disk wind, where the maser VLSR traces mainly the disk rotation and the proper motions the poloidal velocity of the wind. Finally, a sensitive NSF’s Karl G. Jansky Very Large Array (JVLA) 1.3 cm image of the HC HII region obtained from archival data reveals a disk-jet system, illuminated by the UV radiation from IRS1a, associated with an YSO, IRS1c, placed ≈0′′.5 (or ≈1350 au) to the south of the ionized core.Conclusions. This work shows that VLBI observations of the 22 GHz water masers can be used to trace disk winds near ionizing YSOs embedded within compact HII regions.
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最早阶段的原恒星流出物(诗人)
上下文。一颗新诞生的大质量恒星的超致密(HC) HII区域阶段目前尚不清楚,特别是在增强的紫外线辐射如何影响周围气体的运动学和影响质量吸积方面。NGC 7538 IRS1是北半球最明亮、研究最多的HC - HII区域之一。我们的目标是识别嵌入电离气体中的年轻恒星物体(YSOs),并研究它们附近的运动学结构。这项工作扩展了最近一项名为“最早阶段的原恒星流出”(POETS)的调查,该调查致力于研究在发光的yso附近10-100 au尺度上的年轻流出辐射,在它们开始光电离周围介质之前。我们对朝向NGC 7538 IRS1的22 GHz水脉泽进行了多历元甚长基线阵列(VLBA)观测,以测量脉泽的三维速度,根据诗人的发现,这是原恒星风的可靠示踪剂。最近,我们利用灵敏的全球甚长基线干涉测量(VLBI)观测重新观测了NGC 7538 IRS1中的水脉泽,以绘制较弱的脉泽发射图,并研究了脉泽的时间变化。我们的研究证实,在HC HII区域的南部和北部核心观测到的6.7 GHz甲醇微波激射器的两个线性分布的中心,存在两个嵌入的yso, IRS1a和IRS1b,它们之前被解释为边缘旋转盘。水脉波追踪到一个延伸的(≥200au)固定激波前缘,它靠近IRS1a周围的圆盘内部。这个激波锋对应于电离核心南端的边缘,可能是由IRS1a喷出的盘风与下降的包层相互作用产生的。靠近IRS1b的水激射器遵循与圆盘内旋转的6.7 GHz水激射器相同的局部静止标准速度(VLSR)模式,但水激射器固有运动的方向和幅度与旋转不一致。我们提出这些水脉泽正在追踪光蒸发盘风,其中脉泽VLSR主要追踪盘旋转和风的极向速度的固有运动。最后,一个敏感的NSF的Karl G. Jansky甚大阵列(JVLA)从档案数据中获得的HC HII区域的1.3厘米图像显示了一个磁盘射流系统,由IRS1a的紫外线辐射照射,与YSO IRS1c相关,位置≈0”.5(或≈1350 au)到电离核的南部。这项工作表明,22 GHz水脉泽的VLBI观测可以用来追踪嵌入紧凑HII区域的电离yso附近的盘风。
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来源期刊
Astronomy & Astrophysics
Astronomy & Astrophysics 地学天文-天文与天体物理
CiteScore
10.20
自引率
27.70%
发文量
2105
审稿时长
1-2 weeks
期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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