论文标题

幽灵孔径合成成像,取消计算畸变

Ghost Aperture Synthesis Imaging with Computational Aberration Cancellation

论文作者

Sun, Shuai, Nie, Zhen-Wu, Li, Yue-Gang, Lin, Hui-Zu, Liu, Wei-Tao, Chen, Ping-Xing

论文摘要

尽管光孔合成通常被认为是一个多世纪以来唯一获得非常大型成像仪的访问,但在波长规模上平阶段的所有巨大子孔的问题仍然令人难以置信。此外,伴随的自适应光学器件对抗大气湍流也很笨重且复杂。在这里,我们根据计算幽灵成像方法提出了通过湍流提出了一种新的范式孔径合成成像仪。信号路径上的复杂畸变是通过在参考路径上引入最佳补偿阶段来计算取消的。通过取消高级畸变,我们的成像仪不受相思和畸变问题。由于湍流而导致的图像降解也被抑制,甚至在没有任何指导星或波前塑形装置的情况下消除。在实验上,衍射受限的成像是在湍流下实现的,其横向相干长度远小于系统的光圈。

Although optical aperture synthesis has been generally regarded as the only access to very large imager for over a century, the problem of phasing all the giant sub-apertures on the scale of wavelength is still prohibitive. Besides, the accompanied adaptive optics combatting the atmospheric turbulence is also bulky and complicated. We here propose a new paradigm aperture synthesis imager through turbulence, based on computational ghost imaging method. The complex aberrations on the signal path are computationally cancelled by introducing an optimum compensation phase on the reference path. With the advanced aberration cancellation, our imager is free from phasing and aberrations problem. The image degradation due to turbulence is also suppressed and even eliminated without any guide star or wavefront shaping device. Experimentally, diffraction-limited imaging is achieved under turbulence featuring transverse coherence length far less than the optical aperture of the system.

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