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Compensation of atmospheric turbulence with the use of two-mirror adaptive system

机译:使用双镜子自适应系统补偿大气湍流

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It was shown that there exist two sources of errors in an adaptive optics system. The first source appears due to limitations induced by the elements of the system such as a Shack Hartmann sensor and deformable mirror. The second associated with the violation of the optical reciprocity principle in algorithm of phase conjugation, namely, with substitute of beacon amplitude distribution by distribution of a Gaussian beam generated by a laser. Absolute correction of turbulent aberration is possible only in case of strict maintenance of a principle, i.e. in case of phase reversal. In the paper the possibility is considered to realize phase reversal in a linear system and only with the use of phase control of the beam. The system should include two mirrors separated by the vacuum gap of a finite size. Estimations were obtained by correction efficiency on the base of phase conjugation and with the use of two mirror adaptive system.
机译:结果表明,在自适应光学系统中存在两个错误源。第一个来源由于由系统的元件(例如Shack Hartmann传感器和可变形镜)诱导的限制而引起的。第二次与相位缀合算法违反光学互易原理的第二相关,即,通过通过激光产生的高斯光束分布替代信标幅度分布。只有在严格维护原则的情况下,就可以绝对校正,即在相位逆转的情况下。在本文中,认为可能性是在线性系统中实现相位逆转,并且仅使用光束的相位控制。该系统应包括两个镜子,其由有限尺寸的真空差距分开。通过校正效率和使用两个镜像自适应系统的校正效率获得估计。

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