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Effect of wavefront corrugations on fringe motion in an astronomical interferometer with spatial filters

机译:波前波纹对带空间滤波器的天文干涉仪中条纹运动的影响

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摘要

Numerical simulations of atmospheric turbulence and adaptive optics (AO) wavefront correction are performed to investigate the time scale for fringe motion in optical interferometers with spatial filters. These simulations focus especially on partial AO correction, where only a finite number of Zernike modes are compensated. The fringe motion is found to depend strongly on both the aperture diameter and the level of AO correction used. In all the simulations the coherence time scale for interference fringes is found to decrease dramatically when the Strehl ratio provided by the AO correction is approx.<30percent. For AO systems that give perfect compensation of a limited number of Zernike modes, the aperture size that gives the optimum signal for fringe phase tracking is calculated. For AO systems that provide noisy compensation of Zernike modes (but are perfectly piston neutral), the noise properties of the AO system determine the coherence time scale of the fringes when the Strehl ratio is approx.<30percent.
机译:进行了大气湍流和自适应光学(AO)波前校正的数值模拟,以研究带有空间滤波器的光学干涉仪中条纹运动的时间尺度。这些仿真特别关注于部分AO校正,其中仅对有限数量的Zernike模式进行了补偿。发现条纹运动在很大程度上取决于孔径和所使用的AO校正水平。在所有模拟中,当由AO校正提供的Strehl比大约小于30%时,发现干涉条纹的相干时间尺度显着降低。对于能够对有限数量的Zernike模式进行完美补偿的AO系统,将计算出为条纹相位跟踪提供最佳信号的孔径大小。对于提供Zernike模式噪声补偿(但完全是活塞中性)的AO系统,当Strehl比约为<30%时,AO系统的噪声特性决定了条纹的相干时间尺度。

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  • 来源
    《Applied optics》 |2005年第29期|共5页
  • 作者

    Robert Tubbs;

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