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A New Era of Submillimeter GRB Afterglow Follow-Ups with the Greenland Telescope

机译:格陵兰望远镜的亚毫米GRB余辉跟踪的新时代

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摘要

Planned rapid submillimeter (submm) gamma-ray-bursts (GRBs) follow-up observations conducted using the Greenland Telescope (GLT) are presented. The GLT is a 12-m submm telescope to be located at the top of the Greenland ice sheet, where the high altitude and dry weather porvide excellent conditions for observations at submm wavelengths. With its combination of wavelength window and rapid responding system, the GLT will explore new insights on GRBs. Summarizing the current achievements of submm GRB follow-ups, we identify the following three scientific goals regarding GRBs: (1) systematic detection of bright submm emissions originating from reverse shock (RS) in the early afterglow phase, (2) characterization of forward shock and RS emissions by capturing their peak flux and frequencies and performing continuous monitoring, and (3) detections of GRBs at a high redshift as a result of the explosion of first generation stars through systematic rapid follow-ups. The light curves and spectra calculated by available theoretical models clearly show that the GLT could play a crucial role in these studies.
机译:介绍了使用格陵兰望远镜(GLT)进行的计划中的快速亚毫米(submm)伽马射线暴(GRB)后续观察。 GLT是一个12米亚毫米望远镜,位于格陵兰冰盖的顶部,那里的高海拔和干燥天气为亚毫米波长的观测提供了极好的条件。结合波长窗口和快速响应系统,GLT将探索有关GRB的新见解。总结了亚毫米GRB跟踪的当前成就,我们确定了关于GRB的以下三个科学目标:(1)在余辉早期阶段系统检测来自反向冲击(RS)的明亮亚毫米排放,(2)前向冲击的表征通过捕获其峰值通量和频率并进行连续监测,以及(3)由于第一代恒星通过系统的快速跟踪而爆炸,从而以高红移检测到GRB,从而产生RS辐射。通过可用的理论模型计算出的光曲线和光谱清楚地表明,GLT可以在这些研究中发挥关键作用。

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