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Solar CIV Vacuum-Ultraviolet Fabry-Perot Interferometers

机译:太阳能CIV真空紫外法布里-珀罗干涉仪

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摘要

Aims: A tunable, high spectral resolution, high effective finesse, vacuum ultraviolet (VUV) Fabry-Perot interferometer (PPI) is designed for obtaining narrow-passband images, magnetograms, and Dopplergrams of the transition region emission line of CIV (155 nm). Methods: The integral part of the CIV narrow passband filter package (with a 2-10 pm FWHM) consists of a multiple etalon system composed of a tunable interferometer that provides high-spectral resolution and a static low-spectral resolution interferometer that allows a large effective free spectral range. The prefilter for the interferometers is provided by a set of four mirrors with dielectric high-reflective coatings. A tunable interferometer, a VUV piezoelectric-control etalon, has undergone testing using the surrogate F2 eximer laser line at 157 nm for the CIV line. We present the results of the tests with a description of the overall concept for a complete narrow-band CIV spectral filter. The static interferometer of the filter is envisioned as being hudt using a set of fixed MgF2 plates. The four-mirror prefilter is designed to have dielectric multilayer n-stacks employing the design concept used in the Ultraviolet Imager of NASA's Polar Spacecraft. A dual etalon system allows the effective free spectral range to be commensurate with the prefilter profile. With an additional etalon, a triple etalon system would allow a spectrographic resolution of 2 pm. The basic strategy has been to combine the expertise of spaceflight etalon manufacturing with VUV coating technology to build a VUV FPI which combines the best attributes of imagers and spectrographs into a single compact instrument. Results. Spectro-polarimetry observations of the transition region CIV emission can be performed to increase the understanding of the magnetic forces, mass motion, evolution, and energy release within the solar atmosphere at the base of the corona where most of the magnetic field is approximately force-free. The 2D imaging of the full vector magnetic field at the height of maximum magnetic influence (minimum plasma beta) can be accomplished, albeit difficult, by measuring the Zeeman splitting of the CIV resonance pair. Designs of multiple VUV FPIs can be developed for integration into future orbiting solar observatories to obtain rapid cadence, spectral imaging of the transition region.
机译:目的:设计一种可调的,高光谱分辨率,高效精细的真空紫外线(VUV)法布里-珀罗干涉仪(PPI),用于获取CIV过渡区发射线(155 nm)的窄带图像,磁图和多普勒图。方法:CIV窄带通滤波器套件(具有2-10 pm FWHM)的组成部分由多标准具系统组成,该系统由可提供高光谱分辨率的可调干涉仪和允许较大光谱的静态低光谱分辨率干涉仪组成有效自由光谱范围。干涉仪的预滤器由一组四个带电介质高反射涂层的镜提供。可调干涉仪,VUV压电控制标准具,已使用CIV线的替代F2准分子激光线在157 nm处进行了测试。我们以完整的窄带CIV频谱滤波器的总体概念描述来介绍测试结果。可以设想使用一组固定的MgF2平板抑制滤波器的静态干涉仪。四镜预滤器采用NASA极地飞船的紫外成像仪中使用的设计概念,设计为具有多层电介质叠层。双标准具系统允许有效的自由光谱范围与预滤器轮廓相称。再加上一个标准具,三重标准具系统可以实现2 pm的光谱分辨率。基本策略是将航天标准具的制造专业知识与VUV涂层技术相结合,以构建VUV FPI,它将成像器和光谱仪的最佳属性组合到一个紧凑的仪器中。结果。可以对过渡区CIV发射进行光谱极化观测,以加深对日冕底部太阳大气中的磁力,质量运动,演化和能量释放的了解,在这里大多数磁场近似为力-自由。尽管很困难,但可以通过测量CIV共振对的塞曼分裂来完成全矢量磁场在最大磁场影响高度(最小血浆β)的2D成像。可以开发多个VUV FPI的设计,以便集成到未来的轨道太阳观测站中,从而获得过渡区域的快速节奏,光谱成像。

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