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Layer-oriented adaptive optics for solar telescopes

机译:太阳望远镜的面向层的自适应光学器件

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摘要

First multiconjugate adaptive-optical (MCAO) systems are currently being installed on solar telescopes. The aim of these systems is to increase the corrected field of view with respect to conventional adaptive optics. However, this first generation is based on a star-oriented approach, and it is then difficult to increase the size of the field of view beyond 60-80 arc sec in diameter. We propose to implement the layer-oriented approach in solar MCAO systems by use of wide-field Shack-Hartmann wavefront sensors conjugated to the strongest turbulent layers. The wavefront distortions are averaged over a wide field: the signal from distant turbulence is attenuated and the tomographic reconstruction is thus done optically. The system consists of independent correction loops, which only need to account for local turbulence: the subapertures can be enlarged and the correction frequency reduced. Most importantly, a star-oriented MCAO system becomes more complex with increasing field size, while the layer-oriented approach benefits from larger fields and will therefore be an attractive solution for the future generation of solar MCAO systems.
机译:当前,第一个多共轭自适应光学(MCAO)系统正在安装在太阳望远镜上。这些系统的目的是相对于传统的自适应光学器件增加校正后的视场。然而,第一代是基于面向星星的方法,因此很难将视场的大小增加到直径超过60-80弧秒。我们建议通过使用与最强湍流层共轭的宽视场Shack-Hartmann波前传感器在太阳能MCAO系统中实施面向层的方法。波前畸变在宽广的范围内平均:来自远处湍流的信号被衰减,因此层析成像的重建是光学完成的。该系统由独立的校正环组成,仅需考虑局部湍流:子孔径可以扩大,校正频率可以降低。最重要的是,随着场尺寸的增加,面向恒星的MCAO系统将变得更加复杂,而面向层的方法将从更大的场中受益,因此将成为下一代太阳能MCAO系统的有吸引力的解决方案。

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  • 来源
    《Applied optics》 |2012年第23期|共9页
  • 作者

    Aglae Kellerer;

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  • 正文语种 eng
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