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Observing the integrated and spatially resolved Sun with ultra-high spectral resolution

机译:用超高光谱分辨率观察集成和空间分辨的太阳

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The Institute for Astrophysics Gottingen operates a solar observatory that combines a 50 cm siderostat with (1) a vacuum vertical telescope, (2) a very high resolution Fourier Transform Spectrograph (R > 900,000 at 600 nm), and (3) a Laser Frequency Comb for extremely precise and accurate frequency calibration (< 10cm/s). We introduce our setup that feeds the spectrograph with either a 32.5" field of view of the solar surface, or with disk-integrated sunlight for Sun-as-a-star observations and explain the necessary computational steps to guide specific positions on the solar surface into the fiber. Our instrument suite can deliver spectroscopic measurements with extremely accurate frequency calibration, which is valid across very large frequency regions (approx. 400-800 nm in wavelength). This allows precision spectroscopy of individual lines in order to study the variability of spectral lines in Sun-as-a-star observations as well as determining the convective blueshift across the solar surface from many spectral lines.
机译:的天体物理研究所哥廷根操作的太阳观测,结合了50厘米定星镜与(1)的真空垂直望远镜,(2)非常高的分辨率傅里叶变换光谱仪(R> 900000在600nm),和(3)激光频率梳为极其精确和准确的频率校准(<10厘米/秒)。我们推出了我们的设置与视太阳表面的无论是32.5" 场饲料光谱仪,或与磁盘集成日照太阳作为一种星级观察和解释必要的计算步骤,引导太阳表面上的特定位置到纤维。我们的器械套件可以具有极其准确的频率校准,这是跨越非常大的频率区(约在400-800波长nm)的有效递送光谱测量。这允许各条线的精密光谱为了研究的可变性谱线在太阳作为一种星观测以及从许多谱线确定跨太阳表面对流蓝移。

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