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Solar–Stellar Irradiance Comparison Experiment II (Solstice II): Instrument Concept and Design

机译:太阳-恒星辐照度比较实验II(Solstice II):仪器的概念和设计

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摘要

The Solar–Stellar Irradiance Comparison Experiment II (SOLSTICE II) is one of four experiments launched aboard the Solar Radiation and Climate Experiment (SORCE) on 25 January, 2003. Its principal science objectives are to measure solar spectral irradiance from 115 to 320 nm with a spectral resolution of 1 nm, a cadence of 6 h, and an accuracy of 5% and to determine solar variability with a relative accuracy of 0.5% per year during a 5-year long nominal mission. SOLSTICE II meets these objectives using a pair of identical scanning grating monochromators that can measure both solar and stellar irradiance. Instrument radiometric responsivity was calibrated to ∼3% absolute accuracy before launch using the Synchrotron Ultraviolet Radiation Facility (SURF) at the National Institute for Standards and Technology (NIST) in Gaithersburg, MD. During orbital operations, SOLSTICE II has been making daily measurements of both the Sun and an ensemble of bright, stable, main-sequence B and A stars. The stellar measurements allow the tracking of changes in instrument responsivity with a relative accuracy of 0.5% per year over the life of the mission. SOLSTICE II is an evolution of the SOLSTICE i instrument that is currently operating on the Upper Atmosphere Research Satellite (UARS). This paper reviews the basic SOLSTICE concept and describes the design, operating modes, and early performance of the SOLSTICE II instrument.
机译:太阳-恒星辐照度比较实验II(SOLSTICE II)是2003年1月25日在太阳辐射与气候实验(SORCE)上发起的四个实验之一。其主要科学目的是测量115至320 nm的太阳光谱辐照度1 nm的光谱分辨率,6 h的节奏和5%的精度,并在5年的长期标称任务中以每年0.5%的相对精度确定太阳变化。 SOLSTICE II使用一对相同的可同时测量太阳和恒星辐照度的扫描光栅单色仪来实现这些目标。在发射前,使用美国马里兰州盖瑟斯堡市国家标准与技术研究院(NIST)的同步加速器紫外线辐射设施(SURF)将仪器的辐射响应度校准至约3%的绝对精度。在轨道运行期间,SOLSTICE II一直在对太阳以及明亮,稳定的主序列B和A星进行日常测量。恒星的测量值可以跟踪整个任务期限内仪器响应度的变化,每年的相对精度为0.5%。 SOLSTICE II是SOLSTICE i仪器的改进,目前正在高空研究卫星(UARS)上运行。本文回顾了SOLSTICE的基本概念,并描述了SOLSTICE II仪器的设计,操作模式和早期性能。

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  • 来源
    《Solar Physics》 |2005年第2期|225-258|共34页
  • 作者单位

    Laboratory for Atmospheric and Space Physics University of Colorado;

    Laboratory for Atmospheric and Space Physics University of Colorado;

    Laboratory for Atmospheric and Space Physics University of Colorado;

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  • 正文语种 eng
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