首页> 外文会议>SPIE Conference on Innovative Telescopes and Instrumentation for Solar Astrophysics >Ultraviolet and Visible-light Coronagraphic Imager (UVCI) for HERSCHEL (Helium Resonance Scattering in Corona HELiosphere)
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Ultraviolet and Visible-light Coronagraphic Imager (UVCI) for HERSCHEL (Helium Resonance Scattering in Corona HELiosphere)

机译:紫外线和可见光胰刻型成像仪(UVCI)为赫尔赫尔(氦气共振散射在科罗长&氦圈)

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The HERSCHEL (HElium Resonance Scattering in the Corona and HELiosphere) Sun-Earth Sub-Orbital Program is a proposed sounding-rocket payload designed to investigate helium coronal abundance and solar wind acceleration from a range of solar source structures by obtaining simultaneous observations of the electron, proton and helium solar coronae. HERSCHEL will provide the first measurements of the coronal helium abundance in source regions of the solar wind, thus bringing key elements to our understanding of the Sun-Earth connections. The HERSCHEL instrument package consists of the Extreme Ultraviolet Imaging Telescope (EIT) for on-disk coronal observations and the Ultraviolet and Visible-light Coronagraphic Imager (UVCI) for off-limb observations of the corona. The UVCI is an externally occulted, reflecting coronagraph with an off-axis Gregorian telescope. UVCI will be able to take coronal images at heliocentric heights comprised between 1.2 to 3.5 solar radii of a) K-corona polarized brightness (pB); b) H I Lyman-α, 121.6 nm, line-emission; c) He II Lyman-α, 30.4 nm, line. The key element in the UVCI instrument concept is that the mirrors with multilayer coatings optimized for 30.4 nm still have good reflectivity at 121.6 nm and in the visible. The optical design concept for the UVCI instrument will be discussed, together with its expected optical and throughput performances.
机译:Herschel(Corona和Heliosphere中的氦共振散射)Sun-Nark Sub-orbital计划是一个提出的发声火箭有效载荷,设计用于通过获得电子的同时观察来研究从一系列太阳源结构的氦冠状丰度和太阳能加速度,质子和氦太阳糖。 Herschel将为太阳风源区的冠状氦丰度提供第一次测量,从而使关键元素与我们对太阳地球连接的理解。 Herschel仪器包由极端紫外线成像望远镜(EIT)组成,用于磁盘上的冠状观察和紫外线和可见光胰凝血物质仪(UVCI),用于电晕的肢体观察。 UVCI是一种外部隐藏的,反射带有轴轴的Gregorian望远镜的核心冠状镜。 UVCI将能够在高度为1.2至3.5的太阳半径(A)K-Corona偏振亮度(Pb)之间的冠状图像。 b)H i Lyman-α,121.6nm,漏光; c)统一莱曼-α,30.4纳米,线。 UVCI仪器概念中的关键元件是具有多层涂层的镜子优化为30.4nm仍然具有121.6nm和可见的良好反射率。将讨论UVCI仪器的光学设计概念,以及其预期的光学和吞吐量性能。

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