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Numerical simulations of multiconjugate adaptive optics wave-front reconstruction on giant telescopes

机译:巨望远镜多共轭自适应光学波前重构的数值模拟

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We present sample Monte Carlo simulation results to illustrate the trends in multiconjugate adaptive optics (MCAO) performance as the telescope aperture diameter increases from 8 to 32 m with all other first-order system parameters held constant. The MCAO system considered includes three deformable mirrors, a 1-arc min square field of view, and five wave-front-sensing references consisting of either natural guide stars or laser guide stars at a range of either 30 or 90 km. The rms residual wave-front error decreases slowly with increasing aperture diameter with natural guide stars, whereas performance degrades significantly with increasing aperture diameter for laser guide stars at 30 km if the number of guide stars is held fixed. Performance with laser guide stars at 90 km is a weak function of telescope aperture diameter in the range from 8 to 32 m, with rms wave-front errors no more than 20% greater than the corresponding natural guide-star case for the same level of wave-front sensor's measurement noise.
机译:我们目前的蒙特卡罗模拟结果示例说明了在所有其他一阶系统参数保持不变的情况下,当望远镜孔径从8 m增加到32 m时,多共轭自适应光学(MCAO)性能的趋势。所考虑的MCAO系统包括三个可变形反射镜,一个1电弧最小平方视场以及五个波前感测参考,这些参考由范围30或90 km的自然引导星或激光引导星组成。均方根星的均方根残余波前误差随着自然直径的增大而缓慢减小,而如果保持30 km,则随着激光导星的孔径增大,性能会显着降低。在90 km处,激光制导星的性能是望远镜孔径直径在8至32 m范围内的弱函数,在相同水平的情况下,均方根波前误差不比相应的自然制导星情况大20%。波前传感器的测量噪声。

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    《Applied optics》 |2003年第24期|共8页
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  • 正文语种 eng
  • 中图分类 光学;
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