Diffraction-limited polarimetric imaging of protoplanetary disks and mass-loss shells with VAMPIRES

B. Norris, P. Tuthill, N. Jovanovic, J. Lozi, O. Guyon, N. Cvetojevic, F. Martinache
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引用次数: 9

Abstract

Both the birth and death of a stellar system are areas of key scientific importance. Whether it's understanding the process of planetary formation in a star's early years, or uncovering the cause of the enormous mass-loss that takes place during a star's dying moments, a key to scientific understanding lies in the inner few AU of the circumstellar environment. Corresponding to scales of 10s of milli-arcseconds, these observations pose a huge technical challenge due to the high angular-resolutions and contrasts required. A major stumbling block is the problem of the Earth's own atmospheric turbulence. The other difficulty is that precise calibration is required to combat the extremely high contrast ratios and high resolutions faced. By taking advantage of the fact that starlight scattered by dust in the circumstellar region is polarized, differential polarimetry can help achieve this calibration. Spectral features can also be utilized.
用VAMPIRES进行原行星盘和质量损失壳的衍射限制偏振成像
恒星系统的诞生和消亡都是具有重要科学意义的领域。无论是了解恒星早期行星形成的过程,还是揭示恒星死亡时刻发生的巨大质量损失的原因,科学理解的关键在于恒星周围环境的内部几个天文单位。相对于10毫角秒的尺度,由于需要高角度分辨率和对比度,这些观测提出了巨大的技术挑战。一个主要的障碍是地球自身的大气湍流问题。另一个困难是需要精确的校准来对抗极高的对比度和高分辨率。通过利用星周区域被尘埃散射的星光被偏振的事实,微分偏振法可以帮助实现这种校准。光谱特征也可以被利用。
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