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Method for auto-alignment of digital optical phase conjugation systems based on digital propagation

机译:基于数字传播的数字光学相位共轭系统自动对准的方法

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摘要

Optical phase conjugation (OPC) has enabled many optical applications such as aberration correction and image transmission through fiber. In recent years, implementation of digital optical phase conjugation (DOPC) has opened up the possibility of its use in biomedical optics (e.g. deep-tissue optical focusing) due to its ability to provide greater-than-unity OPC reflectivity (the power ratio of the phase conjugated beam and input beam to the OPC system) and its flexibility to accommodate additional wavefront manipulations. However, the requirement for precise (pixel-to-pixel matching) alignment of the wavefront sensor and the spatial light modulator (SLM) limits the practical usability of DOPC systems. Here, we report a method for auto-alignment of a DOPC system by which the misalignment between the sensor and the SLM is auto-corrected through digital light propagation. With this method, we were able to accomplish OPC playback with a DOPC system with gross sensor-SLM misalignment by an axial displacement of up to~1.5 cm, rotation and tip/tilt of ~5, and in-plane displacement of ~5 mm (dependent on the physical size of the sensor and the SLM). Our auto-alignment method robustly achieved a DOPC playback peak-to-background ratio (PBR) corresponding to more than ~30 % of the theoretical maximum. As an additional advantage, the auto-alignment procedure can be easily performed at will and, as such, allows us to correct for small mechanical drifts within the DOPC systems, thus overcoming a previously major DOPC system vulnerability. We believe that this reported method for implementing robust DOPC systems will broaden the practical utility of DOPC systems.
机译:光相位共轭(OPC)已使许多光学应用成为可能,例如像差校正和通过光纤传输图像。近年来,数字光相位共轭(DOPC)的实现开辟了其在生物医学光学(例如深层组织光学聚焦)中使用的可能性,这是因为它具有提供大于统一的OPC反射率(功率比为OPC系统的相位共轭光束和输入光束)及其灵活性,以适应其他波前操纵。但是,对波前传感器和空间光调制器(SLM)的精确(像素间匹配)对准的要求限制了DOPC系统的实际可用性。在这里,我们报告了一种用于DOPC系统自动对准的方法,该方法通过数字光传播自动校正传感器和SLM之间的不对准。通过这种方法,我们能够通过DOPC系统实现OPC回放,该系统具有高达〜1.5 cm的轴向位移,〜5 的旋转和尖端/倾斜度,总的传感器-SLM未对准。平面内位移约为5mm(取决于传感器和SLM的物理尺寸)。我们的自动对准方法稳健地实现了DOPC回放的峰背景比(PBR),相当于理论最大值的〜30%以上。另外一个优点是,自动对准过程可以很容易地随意执行,因此,我们可以校正DOPC系统内的微小机械漂移,从而克服了以前的主要DOPC系统漏洞。我们相信,该报告的用于实现健壮的DOPC系统的方法将拓宽DOPC系统的实用性。

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