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High-QE fast-readout wavefront sensor with analog phase reconstruction

机译:具有模拟相位重建功能的高QE快速读出波前传感器

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Abstract: The contradiction inherent in high temporal bandwidth adaptive optics wavefront sensing at low-light-levels (LLL) has driven many researchers to consider the use of high bandwidth high quantum efficiency (QE) CCD cameras with the lowest possible readout noise levels. Unfortunately, the performance of these relatively expensive and low production volume devices in the photon counting regime is inevitably limited by readout noise, no matter how arbitrarily close to zero that specification may be reduced. Our alternative approach is to optically couple a new and relatively inexpensive Ultra Blue Gen III image intensifier to an also relatively inexpensive high bandwidth CCD camera with only moderate QE and high rad noise. The result is a high bandwidth broad spectral response image intensifier with a gain of 55,000 at 560 nm. Use of an appropriately selected lenslet array together with coupling optics generates 16 $MUL 16 Shack-Hartmann type subapertures on the image intensifier photocathode, which is imaged onto the fast CCD camera. An integral A/D converter in the camera sends the image data pixel by pixel to a computer data acquisition system for analysis, storage and display. Timing signals are used to decode which pixel is being rad out and the wavefront is calculated in an analog fashion using a least square fit to both x and y tilt data for all wavefront sensor subapertures. Finally, we present system level performance comparisons of these new concept wavefront sensors versus the more standard low noise CCD camera based designs in the low-light-level limit. !0
机译:摘要:高时间带宽自适应光学波前感测在低光水平(LLL)中固有的矛盾促使许多研究人员考虑使用具有尽可能低的读出噪声水平的高带宽高量子效率(QE)CCD相机。不幸的是,这些相对昂贵和低产量的设备在光子计数方式中的性能不可避免地受到读出噪声的限制,无论规格如何任意接近零。我们的替代方法是将新型且价格相对较低的Ultra Blue Gen III图像增强器光学耦合到价格相对较低的高带宽CCD相机,且仅具有适度的QE和高rad噪声。结果是在560 nm处增益为55,000的高带宽宽光谱响应图像增强器。使用适当选择的小透镜阵列的与耦合光学器件一起产生16上的图像增强器的光电阴极,其被成像到快速CCD照相机$ MUL 16夏克哈特曼类型的子孔径。摄像机中的集成A / D转换器将图像数据逐像素发送到计算机数据采集系统,以进行分析,存储和显示。时序信号用于解码哪个像素被引出,并以最小二乘拟合对所有波阵面传感器子孔径的x和y倾斜数据以模拟方式计算波阵面。最后,我们介绍了这些新概念波前传感器与基于标准的低噪声CCD相机设计在低光水平范围内的系统级性能比较。 !0

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