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High-frequency wavefront structure and its effects on the detection of faint companions using adaptive optics

机译:高频波前结构及其对自适应光学器件检测微弱伴星的影响

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Abstract: This paper looks at the detection limits using the new adaptive optics system on the 3.5m SOR telescope, reported by P. Ryan et al. at this conference. We discuss recent advances in our understating of the nature of high frequency wavefront structure. We analyze the various sources of high- frequency wavefront error, arising from residual adaptive optics errors, and other sources of scattered light. We characterize the AO system efficiency in the K band in terms of profile, noise level and noise time correlation. A sharp edge coronograph was used and it improved the performance as much as needed to detect brown dwarfs. Finally we give the exposure time required to detect such companions using the actual AO associated with the coronographic device, and we also point out what needs to be improved on the AO system as well as on the coronographic device in order to reach the level required for detecting exoplanets. !10
机译:摘要:本文着眼于在3.5m SOR望远镜上使用新型自适应光学系统的检测极限,这由P. Ryan等人报道。在这次会议上。我们讨论了低估高频波前结构本质的最新进展。我们分析了由残余自适应光学误差和其他散射光引起的高频波阵面误差的各种来源。我们根据轮廓,噪声水平和噪声时间相关性来表征AO系统在K波段的效率。使用了锋利的日冕仪,它可以根据需要改善性能,以检测出褐矮星。最后,我们给出了使用与冠状动脉造影设备相关联的实际AO检测此类同伴所需的曝光时间,并且我们还指出了需要在AO系统以及冠状动脉造影设备上进行哪些改进才能达到所需的水平探测系外行星。 !10

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