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Adaptive-optics performance of Antarctic telescopes

机译:南极望远镜的自适应光学性能

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The performance of natural guide star adaptive-optics systems for telescopes located on the Antarctic plateau is evaluated and compared with adaptive-optics systems operated with the characteristic mid-latitude atmosphere found at Manna Kea. A 2-m telescope with tip-tilt correction and an 8-m telescope equipped with a high-order adaptive-optics system are considered. Because of the large isoplanatic angle of the South Pole atmosphere, the anisoplanatic error associated with an adaptive-optics correction is negligible, and the achievable resolution is determined only by the fitting error associated with the number of corrected wave-front modes, which depends on the number of actuators on the deformable mirror. The usable field of view of an adaptive-optics equipped Antarctic telescope is thus orders of magnitude larger than for a similar telescope located at a mid-latitude site; this large field of view obviates the necessity for multiconjugate adaptive-optics systems that use multiple laser guide stars. These results, combined with the low infrared sky backgrounds, indicate that the Antarctic plateau is the best site on Earth at which to perform high-resolution imaging with large telescopes, either over large fields of view or with appreciable sky coverage. Preliminary site-testing results obtained recently from the Dome Concordia station indicate that this site is far superior to even the South Pole.
机译:对位于南极高原的望远镜的自然导星自适应光学系统的性能进行了评估,并将其与在Manna Kea发现的中纬度大气特征下运行的自适应光学系统进行了比较。考虑使用具有倾斜校正功能的2米望远镜和配备高阶自适应光学系统的8米望远镜。由于南极大气的等平面角较大,因此与自适应光学校正相关的等平面误差可以忽略不计,而可实现的分辨率仅由与校正后的波前模式数量相关的拟合误差来确定,具体取决于可变形镜上的执行器数量。因此,配备有自适应光学功能的南极望远镜的可用视场比位于中纬度地点的类似望远镜的视场要大几个数量级。这种大视野消除了使用多个激光制导星的多共轭自适应光学系统的必要性。这些结果与低红外的天空背景相结合,表明南极高原是地球上最好的场所,可以在较大的视场或可观的天空覆盖范围内用大型望远镜进行高分辨率成像。最近从Dome Concordia站获得的初步现场测试结果表明,该站点甚至比南极都要优越。

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  • 来源
    《Applied optics》 |2004年第6期|共15页
  • 作者

    Jon S. Lawrence;

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