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Radio Emission From Low Mass Young Stellar Objects

机译:低质量年轻恒星物体的无线电发射

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Compact radio emission provides a reliable method for the detection of low luminosity young stellar objects (YSOs), and is particularly useful for detecting the earliest stages of protostellar evolution where the source itself may still be heavily embedded in its natal dust envelope. For such Class 0 and Class I objects the dominant radio emission mechanism is expected to be free-free, however unlike massive YSOs the way in which this radio emission is produced remains a subject of debate. As larger samples of radio YSOs become available the relationship between the radio luminosity of the Class 0/I population and their wider global properties is now being clarified. Furthermore, the broader scientific applications of such samples are also becoming increasingly apparent. These improved constraints on the nature of the radio emission from YSOs are now contributing to our understanding of not only the evolutionary physics of protostars themselves but also their wider impact on their surroundings. Here we discuss the physics of the radio emission, the emerging relationship between this emission and other properties of YSOs and some of the applications for studies exploiting this emission.
机译:紧凑的无线电发射为检测低亮度的年轻恒星物体(YSO)提供了一种可靠的方法,并且对于探测星源演化的最早阶段特别有用,在该阶段,星源本身仍可能被深深地嵌入其出生的尘埃包层中。对于此类0类和I类对象,主要的无线电发射机制被认为是自由的,但是与大规模YSO不同,产生这种无线电发射的方式仍然是一个争论的话题。随着越来越多的无线电YSO样本的出现,现在正在阐明0 / I类人群的无线电发光度与其更广泛的全局特性之间的关系。此外,这种样品的更广泛的科学应用也变得越来越明显。这些对YSO无线电发射性质的改善的约束条件现在不仅有助于我们了解原恒星本身的进化物理学,而且还有助于我们了解原恒星本身的进化物理学。在这里,我们讨论无线电发射的物理学,这种发射与YSOs其他特性之间的新兴关系以及利用这种发射进行研究的一些应用。

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