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DARWIN fringe sensor: experimental results on the BRISE bench

机译:DARWIN条纹传感器:BRISE实验台上的实验结果

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Interferometer performances are linked to the measurement and the correction of telescope aberrations. For cophasing the large number of beams required by the DARWIN mission with the specified requirements (realtime piston/tip/tilt correction and measurement of higher orders up to spherical aberration), focal-plane approach has been selected due to its simple opto-mechanical device. Several focal-plane algorithms, developed at ONERA and gathered in the stand-alone MASTIC tool, were validated by experiment with a dedicated breadboard on the laboratory test bench BRISE. Our study shows the correct behaviour of the algorithms for linearity and repeatability; specific requirements are reached for piston/tip/tilt and higher order aberrations. These results confirm the validity of focal-plane sensors for the cophasing of multiple-aperture telescopes.
机译:干涉仪的性能与望远镜像差的测量和校正有关。为了将DARWIN任务所需的大量光束与指定要求进行同相(实时活塞/尖端/倾斜校正和更高阶的测量,直至球差),由于其简单的光机械装置而选择了焦平面方法。在ONERA开发的并聚集在独立MASTIC工具中的几种焦平面算法已通过在实验室测试台BRISE上使用专用面包板进行实验进行了验证。我们的研究显示了算法的线性和可重复性的正确行为;达到了活塞/尖端/倾斜和更高阶像差的特定要求。这些结果证实了焦平面传感器对于多孔径望远镜同相的有效性。

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