首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Alignment of optical delay lines for long-baseline stellar interferometry
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Alignment of optical delay lines for long-baseline stellar interferometry

机译:光学延迟线的对准,用于长基线恒星干涉测量

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摘要

The problem of aligning an optical delay line for use in long-baseline stellar interferometry is discussed. In particular, the development of the Navy Prototype Optical Interferometer alignment system is described. Rapid mirror alignment must be performed with sufficient precision that beam shear is limited to a few millimeters over an optical path length that may exceed 800 m. Two possible alignment algorithms are presented. The first is a null-seeking servo where the mirrors are adjusted to minimize the sum of their angular alignment errors. The second method utilizes a priori knowledge of the mirror separations to minimize the total shear. A number of time-dependent and time-independent errors that affect alignment and alignment stability are also discussed.
机译:讨论了将光学延迟线对准以用于长基线恒星干涉测量中的问题。特别地,描述了海军原型光学干涉仪对准系统的发展。快速反射镜对准必须以足够的精度执行,以使在超过800 m的光路长度上,光束剪切力被限制在几毫米之内。提出了两种可能的对准算法。第一个是零位伺服,其中调整了反射镜以使它们的角度对准误差之和最小。第二种方法利用了镜面分离的先验知识,以使总剪切最小。还讨论了许多影响对准和对准稳定性的时间相关和时间无关的错误。

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