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Consequences of spectrograph illumination for the accuracy of radial-velocimetry

机译:光谱仪照明对径向测速精度的影响

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For fiber-fed spectrographs with a stable external wavelength source, scrambling properties of optical fibers and, homogeneity and stability of the instrument illumination are important for the accuracy of radial-velocimetry. Optical cylindric fibers are known to have good azimuthal scrambling. In contrast, the radial one is not perfect. In order to improve the scrambling ability of the fiber and to stabilize the illumination, optical double scrambler are usually coupled to the fibers. Despite that, our experience on SOPHIE and HARPS has lead to identified remaining radial-velocity limitations due to the non-uniform illumination of the spectrograph. We conducted tests on SOPHIE with telescope vignetting, seeing variation and centering errors on the fiber entrance. We simulated the light path through the instrument in order to explain the radial velocity variation obtained with our tests. We then identified the illumination stability and uniformity has a critical point for the extremely high-precision radial velocity instruments (ESPRESSO@VLT, CODEX@E-ELT). Tests on square and octagonal section fibers are now under development and SOPHIE will be used as a bench test to validate these new feed optics.
机译:对于具有稳定外部波长源的光纤馈电光谱仪,光纤的扰动特性以及仪器照明的均匀性和稳定性对于径向测速的准确性至关重要。已知圆柱形光纤具有良好的方位扰乱。相反,放射状的不是完美的。为了提高光纤的加扰能力并稳定照明,通常将光学双扰频器耦合到光纤。尽管如此,由于光谱仪照明不均匀,我们在SOPHIE和HARPS上的经验导致确定了剩余的径向速度限制。我们用望远镜渐晕对SOPHIE进行了测试,发现光纤入口处的变化和对中误差。为了模拟通过测试获得的径向速度变化,我们模拟了通过仪器的光路。然后,我们确定照明稳定性和均匀性对于超高精度径向速度仪器(ESPRESSO @ VLT,CODEX @ E-ELT)至关重要。现在正在开发对方形和八角形截面光纤的测试,并且SOPHIE将用作基准测试来验证这些新的馈电光学器件。

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