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Intensity redistribution for multiconjugate adaptive optics

机译:多共轭自适应光学器件的强度重新分布

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Multi-Conjugate Adaptive-Optical (MCAO) systems have been proposed as a means of compensating both intensity and phase aberrations in a beam propagating through strong-scintillation environments. Progress made on implementing a MCAO system at the Starfire Optical Range (SOR), Air Force Research Laboratory, Kirtland AFB, is discussed. As a preliminary step toward controlling a two deformable mirror (DM) system, the First-stage Intensity Redistribution Experiment (FIRE) examines one aspect of an MCAO system—control and compensation of wavefront intensity. Two wavefront sensors (WFS) and a single DM are employed for this experiment. One WFS is placed conjugate to the DM while the second WFS is located at a distance which produces a desired Fresnel number for the propagation between the WFSs. The WFS measurements are input to a Gerchberg-Saxton based control algorithm in order to determine the DM commands. The phase pattern introduced by the DM is chosen so propagation along the path between the two WFSs produces a desired intensity profile at the second WFS. The second WFS is also used to determine the accuracy of the intensity redistribution and measure its effects on the wavefront phase. In the next phase of MCAO development, a second DM will be added conjugate to the second WFS in order to correct the remaining phase aberrations. This paper presents the setup and operation for FIRE along with initial laboratory results.
机译:已经提出了多共轭自适应光学(MCAO)系统,作为补偿在强闪烁环境下传播的光束中强度和相位像差的一种手段。讨论了在空军研究实验室(Kirtland AFB)的星火光学靶场(SOR)上实施MCAO系统的进展。作为控制两个可变形镜(DM)系统的第一步,第一阶段的强度重新分布实验(FIRE)研究了MCAO系统的一个方面-控制和补偿波前强度。此实验使用两个波前传感器(WFS)和一个DM。将一个WFS与DM共轭放置,而将第二个WFS放置在一定距离处,该距离为WFS之间的传播产生所需的菲涅耳数。 WFS测量值输入到基于Gerchberg-Saxton的控制算法中,以确定DM命令。选择由DM引入的相位模式,以便沿两个WFS之间的路径传播在第二个WFS处产生所需的强度分布。第二个WFS还用于确定强度重新分布的准确性,并测量其对波前相位的影响。在MCAO开发的下一阶段,将第二个DM共轭添加到第二个WFS中,以校正剩余的相位像差。本文介绍了FIRE的设置和操作以及初步的实验室结果。

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