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Time-domain coherence-gated Shack-Hartmann wavefront sensor

机译:时域连贯套装棚哈特曼波前传感器

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In the present paper we investigate the possibility of narrowing the depth range of a physical Shack - Hartmann wavefront sensor (SH-WFS) by using coherence gating. We have already demonstrated a low coherence interferometry (LCI) set-up, capable of generating similar spots patterns as a conventional SH-WFS and also capable of eliminating stray reflections. Here, we evaluate the accuracy of wavefront measurements using a coherence-gated (CG)/SH-WFS. This is based on a Mach-Zehnder interferometer combined with a SH-WFS, that implements time-domain (TD)-LCI acquisition. The wavefront measurement errors introduced by the non-uniform distribution of the reference power over the photo-detector array were investigated. The effect on the centroid nodes accuracy due to different numbers of phaseshifting interferometry (PSI) steps applied was also evaluated. This novel technique has the potential of providing depth resolved aberration information, which can guide better correction in adaptive optics assisted OCT and confocal imaging instruments.
机译:在本文中,我们调查通过使用连贯门控缩小物理棚 - Hartmann波前传感器(SH-WFS)的深度范围的可能性。我们已经证明了低相干干涉测量(LCI)设置,能够产生与传统SH-WFS的类似点图案,并且还能够消除杂散的反射。在这里,我们使用相干门控(CG)/ SH-WF来评估波前测量的准确性。这是基于Mach-Zehnder干涉仪与SH-WF组合,实现时间域(TD)-LCI采集。研究了通过在光检测器阵列上的参考功率的非均匀分布引入的波前测量误差。还评估了对应用不同数量的Phaseshifting干涉测量(PSI)步骤的质心节点精度的影响。这种新颖的技术具有提供深度解决的像差信息的潜力,可以指导自适应光学辅助OCT和共聚焦成像仪器中更好地校正。

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