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Effects of phase shifting error upon the self-referencing interferometer wavefront sensor

机译:相移误差对自参考干涉仪波前传感器的影响

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A few years ago the Air Force Research Laboratory developed a Self-Referencing Interferometer (SRI) wavefront sensor (WFS) that is able to accurately detect the magnitude and phase of propagating electromagnetic waves in a strong scintillation environment. This proved to be very useful in applications of adaptive optics when detecting light or transmitting laser beams through moderate to high turbulence. The SRI operates by interfering a beacon beam, which has been aberrated by atmospheric turbulence, with a reference beam having a known phase and detecting the intensity of the interference pattern. The phase of the beacon is then determined from those interference patterns. At least three different phases of a reference beam are needed to accurately determine the phase on the beacon beam, but four are preferable. These phases shift the reference beam by 0, π/2, π, and 3π/2. In this paper we examine the effects of phase shift errors. Our method can be extrapolated to any WFS utilizing the Carre algorithm with π/2 phase steps. These results show that the SRI is amazingly tolerable to phase shifting errors, specifically that an adaptive optic loop still closes even with a phase error 'epsilon' of nearly ±π/2. Even more unexpected, it is possible to increase Strehl over the nominally aligned system by as much as 11% in closed loop operation when phase errors are purposefully induced.
机译:几年前,空军研究实验室开发了一种自参考干涉仪(SRI)波前传感器(WFS),该传感器能够准确检测在强闪烁环境中传播的电磁波的幅度和相位。在检测光或通过中到高湍流传输激光束时,这在自适应光学的应用中非常有用。通过干扰已经被大气湍流畸变的信标光束与具有已知相位的参考光束并且检测干涉图案的强度,SRI进行操作。然后从那些干扰模式中确定信标的相位。需要至少三个参考光束的不同相位来精确确定信标光束上的相位,但最好是四个。这些相位使参考光束偏移0,π/ 2,π和3π/ 2。在本文中,我们研究了相移误差的影响。我们的方法可以利用π/ 2相位步长的Carre算法外推到任何WFS。这些结果表明,SRI对相移误差具有惊人的耐受性,特别是即使相位误差“ε”接近±π/ 2,自适应光学环路仍会闭合。更出乎意料的是,在故意引起相位误差的情况下,在闭环运行中,可以将名义上对齐的系统的Strehl值提高多达11%。

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