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Performance of coronagraph on AEOS 3.6m AO telescope

机译:在AEOS 3.6M AO望远镜的血管冠状动脉的表现

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Adaptive optics (AO) is useful in correcting the blurring effects of the atmosphere responsible for most energy in the halo of the point spread function. A coronagraph can further enhance faint companion searches by reducing the diffraction rings surrounding a well corrected image peak. Here, we use a coronagraph on the Advanced Electro-Optical System (AEOS) at the Maui Space Surveillance Complex (MSSC) to test these benefits. The spatial characteristics of the scattered energy produced at AEOS are explored from the viewpoint of searching for faint stellar companions. The benefit of using AO is found to be 3 to 4.5 stellar magnitudes for a ten second integration time at 1 to 2 microns, with the most benefit at radial distances less than one arcsecond. More advanced AO/coronagraphic systems should be able to produce even better results. Using AO and a coronagraph should be strongly considered when attempting to image faint companions.
机译:自适应光学(AO)可用于校正对点扩散功能的光晕负责的大多数能量的模糊效果。通过减少良好校正的图像峰值的衍射环来进一步增强微弱的伴侣搜索。在这里,我们在毛伊空间监控复合体(MSSC)的高级电光系统(AEOS)上使用调节件,以测试这些益处。从寻找微弱的恒星伴侣的观点来看,AEOS产生的散射能量的空间特征。使用AO的益处是在1到2微米的十个第二积分时间为3至4.5个恒星大小,在径向距离小于一个弧形距离的径向距离最多。更先进的AO / Coronagraphic Systems应该能够产生更好的结果。在尝试图像微弱的伴侣时,应该强烈考虑使用AO和调节件。

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