论文标题

搜索高质量星形区域的OH 6035 MHz线

A search for the OH 6035 MHz line in high-mass star-forming regions

论文作者

Szymczak, M., Wolak, P., Bartkiewicz, A., Aramowicz, M., Durjasz, M.

论文摘要

在高质量的年轻恒星物体(HMYSOS)环境中检测到的OH MASER的激发态对于提高我们对这些物体物理条件的理解以及提供有关其磁场的信息至关重要。我们的目标是在Hmysos中搜索激发态的OH 6035 MHz Maser发射,这些发射可能逃脱了以前的调查中的检测或从未被搜索过。观察到6668 MHz甲醇MASER系的未靶向调查的HmysoS样品在6035 MHz OH的过渡时,使用32 m射电望远镜进行了6035 MHz OH的过渡。在OH 6031 MHz系列中观察到6035 MHz检测。在两年的时间里,至少观察到三分之二的检测。在445个目标中,在6035 MHz中检测到37个目标,其中包括7个新发现。检测到6031 MHz线的10035 MHz来源,其中一种先前没有报道。所有新检测到的来源都是微弱的,峰值密度低于4 JY,并且在4到20个月的时间尺度上显示出明显或高的变异性。在三个新来源中鉴定出的Zeeman对候选者意味着磁场强度为2至11 mg。比较我们的光谱与获得的$ \ sim $ 10年前的光谱表明可变性程度不同,但是$ \ sim $ 25 yr时间表上的可变性指数的总体增加,通常伴随着轮廓形状的重大变化。

The excited states of OH masers detected in the environment of high-mass young stellar objects (HMYSOs) are important for improving our understanding of the physical conditions of these objects and also provide information about their magnetic fields. We aim to search for excited-state OH 6035 MHz maser emission in HMYSOs which might have escaped detection in previous surveys or were never searched for. A sample of HMYSOs derived from untargeted surveys of the 6668 MHz methanol maser line was observed at 6035 MHz OH transition with the Torun 32 m radio telescope. The 6035 MHz detections were observed in the OH 6031 MHz line. Two-thirds of the detections were observed at least three times over a two-year period. Out of 445 targets, 37 were detected at 6035 MHz, including seven new discoveries. The 6031 MHz line was detected towards ten 6035 MHz sources, one of which was not previously reported. All the newly detected sources are faint with the peak flux density lower than 4 Jy and show significant or high variability on timescales of 4 to 20 months. Zeeman pair candidates identified in three new sources imply a magnetic field intensity of 2 to 11 mG. Comparison of our spectra with those obtained $\sim$10 yr ago indicates different degrees of variability but there is a general increase in the variability index on an $\sim$25 yr timescale, usually accompanied by significant changes in the profile shape.

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