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Science Development Study for the Atacama Large Aperture Submillimeter Telescope (atlast) -- Solar and Stellar Observations

Open research Europe(2024)

Rosseland Centre for Solar Physics | Astronomical Institute | Hvar Observatory | Centro de Rádio Astronomia e Astrofísica Mackenzie | Center for Solar-Terrestrial Research | National Radio Astronomy Observatory | SUPA School of Physics and Astronomy | The Catholic University of America | Cagliari Astronomical Observatory | National Astronomical Observatory of Japan | Space Vehicles Directorate | UK Astronomy Technology Centre | Institute of Theoretical Astrophysics | European Southern Observatory | Astrochemistry Laboratory | Observatoire de la Cote d'Azur | NRC Herzberg Astronomy and Astrophysics | Cosmic Dawn Center | Max-Planck-Institut fur extraterrestrische Physik | Department of Physics & Astronomy | Department of Physics and Astronomy | School of Physics & Astronomy | Division of Geological and Planetary Sciences

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Abstract
Observations at (sub-)millimeter wavelengths offer a complementary perspective on our Sun and other stars, offering significant insights into both the thermal and magnetic composition of their chromospheres. Despite the fundamental progress in (sub-)millimeter observations of the Sun, some important aspects require diagnostic capabilities that are not offered by existing observatories. In particular, simultaneously observations of the radiation continuum across an extended frequency range would facilitate the mapping of different layers and thus ultimately the 3D structure of the solar atmosphere. Mapping large regions on the Sun or even the whole solar disk at a very high temporal cadence would be crucial for systematically detecting and following the temporal evolution of flares, while synoptic observations, i.e., daily maps, over periods of years would provide an unprecedented view of the solar activity cycle in this wavelength regime. As our Sun is a fundamental reference for studying the atmospheres of active main sequence stars, observing the Sun and other stars with the same instrument would unlock the enormous diagnostic potential for understanding stellar activity and its impact on exoplanets. The Atacama Large Aperture Submillimeter Telescope (AtLAST), a single-dish telescope with 50m aperture proposed to be built in the Atacama desert in Chile, would be able to provide these observational capabilities. Equipped with a large number of detector elements for probing the radiation continuum across a wide frequency range, AtLAST would address a wide range of scientific topics including the thermal structure and heating of the solar chromosphere, flares and prominences, and the solar activity cycle. In this white paper, the key science cases and their technical requirements for AtLAST are discussed.
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Earth observation,small satellite,Thermal Analysis
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要点】:论文提出Atacama Large Aperture Submillimeter Telescope (AtLAST)的科研项目,旨在通过观测太阳和其他恒星,提升对恒星活动及其对系外行星影响的理解。

方法】:利用AtLAST的宽频率范围辐射连续谱探测能力,实现对太阳大气层的热结构和加热机制、太阳耀斑和日珥、以及太阳活动周期的详细研究。

实验】:未具体描述实验过程,但提出AtLAST望远镜将在智利阿塔卡马沙漠建造,通过其高时间分辨率和大区域映射能力,系统地监测和追踪太阳耀斑的时序演化,并进行长期观测以研究太阳活动周期。数据集名称未提及。