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Research on the Application of Fast-steering Mirror in Stellar Interferometers

机译:快速转向镜在恒星干涉仪中的应用研究

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摘要

In stellar interferometers, the fast-steering mirror (FSM) is widely utilized to correct the wavefront tilt caused by the atmospheric turbulence and internal instrumental vibration, because of its high resolution and fast response frequency. In this study, the non-coplanar error between the FSM and the actuator deflection axis introduced by the manufacturing, assembly, and adjustment is analyzed systematically. Via a numerical method, the additional optical path difference (OPD) caused by the above factors is studied, and its effect on the fringe tracking accuracy of a stellar interferometer is also discussed. On the other hand, the starlight parallelism between the beams of two arms is one of the main factors for the loss of fringe visibility. By analyzing the influence of wavefront tilt caused by the atmospheric turbulence on fringe visibility, a simple and efficient real-time correction scheme of starlight parallelism is proposed based on a single array detector. The feasibility of this scheme is demonstrated by a laboratory experiment. The results show that after the correction of fast-steering mirror, the starlight parallelism meets preliminarily the requirement of a stellar interferometer on the wavefront tilt.
机译:在恒星干涉仪中,快速转向镜(FSM)被广泛利用以校正由大气湍流和内部仪器振动引起的波前倾斜,因为其高分辨率和快速响应频率。在本研究中,系统地分析了由制造,组装和调整引入的FSM和致动器偏转轴之间的非共面误差。通过数值方法,研究了由上述因素引起的附加光路径(OPD),并且还讨论了对恒星干涉仪的条纹跟踪精度的影响。另一方面,两个臂束之间的星光平行是损失条纹可见性的主要因素之一。通过分析由大气湍流引起的波前倾斜对边缘可见性引起的影响,基于单个阵列检测器提出了一种简单有效的星光并行度的实时校正方案。该方案的可行性由实验室实验证明。结果表明,在矫正快速转向镜之后,星光并联术语概括地概述了恒星干涉仪在波前倾斜的要求。

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