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Waves and Magnetism in the Solar Atmosphere (WAMIS)

机译:太阳大气中的波和磁性(WAMIS)

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Comprehensive measurements of magnetic fields in the solar corona have a long history as an important scientific goal. Besides being crucial to understanding coronal structures and the Suna??s generation of space weather, direct measurements of their strength and direction are also crucial steps in understanding observed wave motions. In this regard, the remote sensing instrumentation used to make coronal magnetic field measurements is well suited to measuring the Doppler signature of waves in the solar structures. In this paper, we describe the design and scientific values of the Waves and Magnetism in the Solar Atmosphere (WAMIS) investigation. WAMIS, taking advantage of greatly improved infrared filters and detectors, forward models, advanced diagnostic tools and inversion codes, is a long-duration high-altitude balloon payload designed to obtain a breakthrough in the measurement of coronal magnetic fields and in advancing the understanding of the interaction of these fields with space plasmas. It consists of a 20 cm aperture coronagraph with a visible-IR spectro-polarimeter focal plane assembly. The balloon altitude would provide minimum sky background and atmospheric scattering at the wavelengths in which these observations are made. It would also enable continuous measurements of the strength and direction of coronal magnetic fields without interruptions from the day-night cycle and weather. These measurements will be made over a large field-of-view allowing one to distinguish the magnetic signatures of different coronal structures, and at the spatial and temporal resolutions required to address outstanding problems in coronal physics. Additionally, WAMIS could obtain near simultaneous observations of the electron scattered K-corona for context and to obtain the electron density. These comprehensive observations are not provided by any current single ground-based or space observatory. The fundamental advancements achieved by the near-space observations of WAMIS on coronal field would point the way for future ground based and orbital instrumentation.
机译:作为重要的科学目标,对太阳日冕中的磁场进行全面测量已有很长的历史。除了对了解日冕结构和Suna的空间天气至关重要之外,直接测量其强度和方向也是了解波浪运动的关键步骤。在这方面,用于进行日冕磁场测量的遥感仪器非常适合于测量太阳结构中波的多普勒信号。在本文中,我们描述了太阳大气中波和磁性的设计和科学价值(WAMIS)。 WAMIS是一种经过长时间改进的高空气球有效载荷,它利用大大改进的红外滤光片和探测器,正向模型,先进的诊断工具和反演代码而设计,旨在突破冠状磁场的测量并增进对冠状动脉的认识。这些场与空间等离子体的相互作用。它由一个20厘米孔径的日冕仪和一个可见红外分光计焦平面组件组成。气球高度将在进行这些观测的波长处提供最小的天空背景和大气散射。它还将能够连续测量日冕磁场的强度和方向,而不会受到昼夜循环和天气的干扰。这些测量将在较大的视野范围内进行,从而可以区分不同日冕结构的磁特征,并以解决日冕物理学中突出问题所需的时空分辨率。另外,WAMIS可以在上下文中同时获得电子散射K电晕的近距离观测,并获得电子密度。当前任何单个地面或太空观测站均未提供这些全面的观测结果。 WAMIS在日冕场上的近空间观测所取得的根本进展将为未来的地面和轨道仪器指明道路。

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