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Science with CFHT's future high dynamic range AO system PUEO NUI

机译:CFHT的未来高动态范围AO系统与科学PUEO NUI

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Rethinking the efficient use of 4m-class telescopes in the dawning era of larger facilities is a timely but challenging debate. The extensive use of PUEO for imaging (and now spectroscopy) has kept CFHT at the forefront of scientific research with adaptive optics since its commissioning in 1996. Even though larger facilities are now starting to think about ways to implement high order AO systems, we believe the medium size of the CFHT and the excellent quality of the site on Mauna Kea is a perfect combination to reach the highest performances with a high order AO system. The fields of application of high order adaptive optics are exciting: They include extremely high contrast imaging and coronography in the near-infrared and diffraction-limited imaging in the optical, with the corresponding gain in angular resolution. In this paper we present a quick description of a few specific astrophysical problems that would benefit from an upgraded AO system at the Canada-France-Hawaii Telescope. More technical details about the upgrade of PUEO are presented by Lai et al. and Cuillandre et al. in these proceedings, see papers 4839-78 and 4839-31.
机译:重新思考在大型设施的曙光时代有效使用4m级望远镜是一个及时但具有挑战性的辩论。自1996年投入使用以来,PUEO在成像(以及现在的光谱学)中的广泛使用使CFHT一直处于自适应光学科学研究的最前沿。尽管大型设施现在开始考虑实现高阶AO系统的方法,但我们相信CFHT的中等大小和Mauna Kea上站点的出色质量是通过高阶AO系统达到最高性能的完美组合。高阶自适应光学的应用领域令人兴奋:它们包括近红外的超高对比度成像和冠状动脉成像以及光学中的衍射极限成像,以及相应的角分辨率增益。在本文中,我们简要介绍了一些特殊的天体物理学问题,这些问题将受益于加拿大-法国-夏威夷望远镜的升级版AO系统。 Lai等人介绍了有关PUEO升级的更多技术细节。和Cuillandre等。在这些程序中,请参阅第4839-78号和第4839-31号文件。

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