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Magnetic fields of weak line T-Tauri stars

机译:弱线T-TAURI星的磁场

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T-Tauri stars (TTS) are late-type pre-main-sequence (PMS) stars that are gravitationally contracting towards the MS. Those that possess a massive accretion disc are known as classical T-Tauri stars (cTTSs), and those that have exhausted the gas in their inner discs are known as weak-line T-Tauri stars (wTTSs). Magnetic fields largely dictate the angular momentum evolution of TTS and can affect the formation and migration of planets. Thus, characterizing their magnetic fields is critical for testing and developing stellar dynamo models, and trialling scenarios currently invoked to explain low-mass star and planet formation. The MaTYSSE programme (Magnetic Topologies of Young Stars and the Survival of close-in Exoplanets) aims to determine the magnetic topologies of ~ 30 wTTSs and monitor the long-term topology variability of~ 5 cTTSs. We present several wTTSs that have been magnetically mapped thus far (using Zeeman Doppler Imaging), where we find a much wider range of field topologies compared to cTTSs and MS dwarfs with similar internal structures.
机译:T-Tauri Stars(TTS)是后期型前序列(PMS)星星,其重力地致力于MS。拥有巨大吸收光盘的人被称为古典T-Tauri恒星(CTTS),并且那些已经将气体排出的气体在其内圆盘中被称为弱线T-Tauri星(WTTS)。磁场在很大程度上决定了TTS的角动量演变,并且可以影响行星的形成和迁移。因此,表征其磁场对于测试和开发恒星发电机模型至关重要,并且目前调用的试验方案以解释低质量明星和行星形成。 Matysse计划(磁性拓扑的幼颗星和近端外出的存活)旨在确定〜30个WTTS的磁性拓扑,并监测长期拓扑变异性〜5 CTTS。我们展示了几个磁映射到目前为止的WTTS(使用Zeeman多普勒成像),在那里我们发现与具有类似内部结构的CTTS和MS DWARFS相比,找到了更广泛的现场拓扑。

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