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The Lyot Project: Understanding the AEOS Adaptive Optics PSF

机译:Lyot项目:了解AEOS自适应光学PSF

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Adaptive optics (AO) systems have significantly improved astronomical imaging capabilities over the last decade, and are revolutionizing the kinds of science possible with 4-5 m class ground-based telescopes, A thorough understanding of AO system performance at the telescope can enable new frontiers of science as observations push AO systems to their performance limits. We look at the understanding we have gained from recent Lyot Project images at the Advanced Electro-Optical System. (AEOS) 3 6 m telescope to show how progress made in improving WFR can be measured directly in improved science images. We describe how wave front errors affect the AO point-spread function (PSF), and model details of AEOS AO to simulate a PSF which matches the actual AO PSF in the astronomical H-band, Finally, we estimate the impact of improvements to wave front reconstruction techniques on diffraction-limited coronagraphy with the Lyot Project near-infrared coronagraph.
机译:自适应光学(AO)系统在过去十年中具有显着改善的天文影像性能,并且正在彻底改变4-5米地基望远镜的科学各种可能,彻底了解望远镜的AO系统性能可以实现新的前沿作者:王莹,科学我们看看我们在先进的电光系统中从最近的Lyot项目图像获得了理解。 (AEOS)3 6 M望远镜展示如何在改进的科学图像中直接测量改善WFR方面取得的进展。我们描述了波前误差如何影响AO点传播功能(PSF),以及AEOS AO的型号详细信息,以模拟与天文HB频段中的实际AO PSF匹配的PSF,最后,我们估计改善对波浪的影响对雷罗项目近红外凝血性衍射率的前重构技术。

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