论文标题
基于未知调制曲线的空间光调制器基于空间光调制器的无透镜相干衍射成像
Lensless coherent diffraction imaging based on spatial light modulator with unknown modulation curve
论文作者
论文摘要
无透镜成像是一个流行的研究领域,近年来,尺寸较小,视野广泛和较低的畸变的优势。但是,某些传统的无透镜成像方法遭受缓慢的收敛性,机械错误和共轭溶液干扰,这限制了其进一步的应用和开发。在这项工作中,我们提出了一种基于未知调制曲线的空间光调制器(SLM)的无透镜成像方法。在我们的成像系统中,我们使用SLM调节对象的波前,并引入PTYCHOPROCON扫描算法,即使SLM调制曲线不准确或未知,也能够恢复复杂的振幅信息。此外,我们还设计了一个拆分束干扰实验,以校准SLM的调制曲线,并使用校准的调制函数作为支出的Ptychograghy迭代发动机(EPIE)算法的初始值可以提高收敛速度。我们进一步分析了调制函数,算法参数和相干光源对重建图像质量的影响。模拟和真实的实验表明,在恢复速度和准确性方面,所提出的方法优于传统的机械扫描方法,恢复分辨率高达14 um。
Lensless imaging is a popular research field for the advantages of small size, wide field-of-view and low aberration in recent years. However, some traditional lensless imaging methods suffer from slow convergence, mechanical errors and conjugate solution interference, which limit its further application and development. In this work, we proposed a lensless imaging method based on spatial light modulator (SLM) with unknown modulation curve. In our imaging system, we use SLM to modulate the wavefront of object, and introduce the ptychographic scanning algorithm that is able to recover the complex amplitude information even the SLM modulation curve is inaccurate or unknown. In addition, we also design a split-beam interference experiment to calibrate the modulation curve of SLM, and using the calibrated modulation function as the initial value of the expended ptychography iterative engine (ePIE) algorithm can improve the convergence speed. We further analyze the effect of modulation function, algorithm parameters and the characteristics of the coherent light source on the quality of reconstructed image. The simulated and real experiments show that the proposed method is superior to traditional mechanical scanning methods in terms of recovering speed and accuracy, with the recovering resolution up to 14 um.