首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Multi time-step wavefront reconstruction for tomographic adaptive-optics systems
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Multi time-step wavefront reconstruction for tomographic adaptive-optics systems

机译:层析成像自适应光学系统的多时步波阵面重建

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In tomographic adaptive-optics (AO) systems, errors due to tomographic wavefront reconstruction limit the performance and angular size of the scientific field of view (FoV), where AO correction is effective. We propose a multi time-step tomographic wavefront reconstruction method to reduce the tomographic error by using measurements from both the current and previous time steps simultaneously. We further outline the method to feed the reconstructor with both wind speed and direction of each turbulence layer. An end-to-end numerical simulation, assuming a multi-object AO (MOAO) system on a 30 m aperture telescope, shows that the multi time-step reconstruction increases the Strehl ratio (SR) over a scientific FoV of 10 arc min in diameter by a factor of 1.5-1.8 when compared to the classical tomographic reconstructor, depending on the guide star asterism and with perfect knowledge of wind speeds and directions. We also evaluate the multi time-step reconstruction method and the wind estimation method on the RAVEN demonstrator under laboratory setting conditions. The wind speeds and directions at multiple atmospheric layers are measured successfully in the laboratory experiment by our wind estimation method with errors below 2 ms-1. With these wind estimates, the multi time-step reconstructor increases the SR value by a factor of 1.2-1.5, which is consistent with a prediction from the end-to-end numerical simulation. (C) 2016 Optical Society of America
机译:在断层摄影自适应光学(AO)系统中,由于断层摄影波前重建而产生的误差限制了AO校正有效的科学视野(FoV)的性能和角度大小。我们提出了一种多时间步层析X射线波前重建方法,以通过同时使用当前和先前时间步的测量值来减少层析误差。我们进一步概述了向风速和每个湍流层的方向输送给重建器的方法。端到端数值模拟(假设在30 m孔径望远镜上使用多目标AO(MOAO)系统)表明,多时步重建在10弧分min的科学FoV中提高了Strehl比(SR)。与传统的层析X射线照相重建器相比,其直径减小了1.5到1.8倍,这取决于导星的星体,并且对风速和风向有很好的了解。我们还评估了RAVEN演示器在实验室设置条件下的多时步重建方法和风估计方法。通过我们的风估算方法,在实验室实验中成功测量了多个大气层的风速和风向,误差低于2 ms-1。通过这些风估计,多时步重建器将SR值增加了1.2-1.5倍,这与端到端数值模拟的预测一致。 (C)2016美国眼镜学会

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