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Simple inexpensive adaptive optical system for large ground-based telescopes at infrared wavelengths

机译:简单的廉价自适应光学系统,用于红外波长下的大型地面望远镜

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Abstract: Simple adaptive optical system are studied that can provide real-time atmospheric turbulence compensation at IR wavelengths for large ground-based astronomical telescopes. A tip-tilt mirror and a 7-element segmented mirror, a long with an iterative adaptive control method, called Far-Field Optimization, provide the turbulence correction. The primary advantage of far-field optimization is that no near-field phase measurements are required, thus eliminating the need for a wavefront sensor that is necessary in conventional adaptive optical systems. Far-field optimization may also somewhat relax the requirements for an artificial guide star. Computer simulations are used to investigate the application of far-field optimization in the presence of drifting atmospheric turbulence and as a function of the spatial granularity and the temporal bandwidth of the adaptive mirror. !11
机译:摘要:研究了一种简单的自适应光学系统,该系统可以为大型地面天文望远镜提供红外波长的实时大气湍流补偿。带有倾斜自适应镜和7元素分段镜的反光镜,采用了称为“远场优化”的迭代自适应控制方法,可提供湍流校正。远场优化的主要优点是不需要近场相位测量,因此消除了传统自适应光学系统中必需的波前传感器的需要。远场优化也可能在某种程度上放松了对人造导星的要求。计算机模拟用于研究存在漂移的大气湍流时远场优化的应用,并作为自适应镜的空间粒度和时间带宽的函数。 !11

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