论文标题

Daniel K. Inouye太阳能望远镜的可见光谱仪

The Visible Spectro-Polarimeter of the Daniel K. Inouye Solar Telescope

论文作者

de Wijn, A. G., Casini, R., Carlile, A., Lecinski, A. R., Sewell, S., Zmarzly, P., Eigenbrot, A. D., Beck, C., Wöger, F., Knölker, M.

论文摘要

Daniel K. Inouye太阳能望远镜(DKIST)可见光光仪(Visp)是传统的裂隙扫描光谱仪,能够观察到太阳能区域,高达$ 120 \ times78〜 \ mathrm {arcsec}^2 $区域。该设计实现双光束极化法,多色极化调节器,高分散梯形光栅和可以自动定位的三个光谱通道。该仪器的一个定义特征是它在太阳光谱的380-900〜nm范围内的任何地方都可以调整其能力,从而可以同时观察到三个波长的无限组合。这使VISP用户能够对太阳大气的磁结构和等离子体动力学进行良好的光学光学研究,并对太阳光谱进行了完全新颖的研究。在DKIST的第一代仪器套件中,Visp是科学界可用的唯一可用的波长光谱仪。它是专门设计的,是一种发现仪器,用于探索新的光谱和极化诊断,并通过高空间,光谱和时间分辨率观察到太阳偏振光谱的高空间,光谱和时间分辨率观察,以测试改进的偏振线形成模型。在本文文章中,我们描述了VISP的科学要求和设计驱动力,并介绍了在仪器调试期间收集的初步科学数据。

The Daniel K. Inouye Solar Telescope (DKIST) Visible Spectro-Polarimeter (ViSP) is a traditional slit-scanning spectrograph, with the ability to observe solar regions up to a $120\times78~\mathrm{arcsec}^2$ area. The design implements dual-beam polarimetry, a polychromatic polarization modulator, a high-dispersion echelle grating, and three spectral channels that can be automatically positioned. A defining feature of the instrument is its capability to tune anywhere within the 380-900~nm range of the solar spectrum, allowing for a virtually infinite number of combinations of three wavelengths to be observed simultaneously. This enables the ViSP user to pursue well-established spectro-polarimetric studies of the magnetic structure and plasma dynamics of the solar atmosphere, as well as completely novel investigations of the solar spectrum. Within the suite of first-generation instruments at the DKIST, ViSP is the only wavelength-versatile spectro-polarimeter available to the scientific community. It was specifically designed to be a discovery instrument, for the exploration of new spectroscopic and polarimetric diagnostics, and to test improved models of polarized line formation, through high spatial-, spectral-, and temporal-resolution observations of the Sun's polarized spectrum. In this instrument article, we describe the science requirements and design drivers of ViSP, and we present preliminary science data collected during the commissioning of the instrument.

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