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Optical design of visible emission line coronagraph on Indian space solar mission Aditya-L1

机译:印度太阳能使命Aditya-L1的可见排放线调节光学设计

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The ground based observations of the coronal emission lines using a coronagraph are affected by the short duration of clear sky and varying sky transparency. These conditions do not permit to study small amplitude variations in the coronal emission reliably necessary to investigate the process or processes involved in heating the coronal plasma and dynamics of solar corona. The proposed Visible Emission Line Coronagraph (VELC) over comes these limitations and will provide continuous observation 24 h a day needed for detailed studies of solar corona and drivers for space weather predictions. VELC payload onboard India's Aditya-L1 space mission is an internally occulted solar coronagraph for studying the temperature, velocity, density and heating of solar corona. To achieve the proposed science goals, an instrument which is capable of carrying out simultaneous imaging, spectroscopy and spectro-polarimetric observations of the solar corona close to the solar limb is required. VELC is designed with salient features of (a) Imaging solar corona at 500 nm with an angular resolution of 5 arcsec over a FOV of 1.05 Ro to 3 Ro (Ro:Solar radius) (b) Simultaneous multi-slit spectroscopy at 530.3 nm [Fe XIV],789.2 nm [Fe XI] and 1074.7 nm [Fe XIII] with spectral dispersion of 28m angstrom, 31m angstrom and 202m angstrom per pixel respectively, over a FOV of 1.05 Ro to 1.5Ro. (c) Multi-slit dual beam spectro-polarimetry at 1074.7 nm. All the components of instrument have been optimized in view of the scientific objectives and requirements of space payloads. In this paper we present the details of optical configuration and the expected performance of the payload.
机译:使用菌根的基于冠状发射线的地面观察受清晰的天空和不同天空透明度的短暂持续时间的影响。这些条件不允许研究冠状排放中的小幅度变化,以研究加热太阳能电晕的冠状等离子体和动力学所涉及的过程或过程。拟议的可见排放线血管结(VELC)过度来到这些限制,并将在太阳能电晕和司机进行太空天气预报的驾驶员进行详细研究所需的连续观察。 Velc Payload船上印度的Aditya-L1空间任务是一种用于研究太阳能电晕的温度,速度,密度和加热的内部透镜太阳能调节。为了实现所提出的科学目标,需要一种能够进行同时成像,光谱和光谱 - 靠近太阳肢体的太阳能电晕的仪器。 VELC设计具有(a)成像太阳能电晕的凸起特征,500nm,在1.05 ro至3 ro(ro:太阳半径)(b)的FOV上的角度分辨率为5°C至3 RO(RO:太阳半径)(b)在530.3nm下同时多裂光谱学[ Fe XIV],789.2nm [Fe xi]和1074.7nm [Fe XIII]分别具有28m埃,31m埃和202m埃的频谱分散,分别在1.05 ro至1.50的FOV上分别为每像素。 (c)1074.7nm的多狭缝双光束光谱 - 偏振率。鉴于空间有效载荷的科学目标和要求,仪器的所有组件都已进行了优化。在本文中,我们介绍了光学配置的细节和有效载荷的预期性能。

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