He Xiaoliang, Veetil Suhas P, Jiang Zhilong, Kong Yan, Wang Shouyu, Liu Cheng
Opt Express. 2020 Aug 17;28(17):25655-25663. doi: 10.1364/OE.403147.
A high-speed coherent diffraction imaging method is proposed by varying the curvature of illumination with a focus tunable lens. The imaging setup is free of conventional mechanical translation and takes only milliseconds to refocus by changing the electric signal applied on the lens. It is more compact and also an inexpensive alternative to coherent diffraction imaging with computerized translational stages. A detector that is kept at a fixed distance from the sample records diffraction patterns each time the spherical wavefront illuminations on the sample is changed with a control current. The complex wavefront of the object is then quantitatively recovered from the diffraction intensity measurements using an iterative phase retrieval algorithm. The feasibility of the proposed method is experimentally verified using various samples. Extremely short response time of the focus tunable lens makes the proposed method highly suitable for applications that requires high speed imaging.
提出了一种通过使用聚焦可调透镜改变照明曲率的高速相干衍射成像方法。该成像装置无需传统的机械平移,通过改变施加在透镜上的电信号重新聚焦仅需几毫秒。它更加紧凑,也是使用计算机控制平移台进行相干衍射成像的一种经济的替代方案。每次通过控制电流改变照射在样品上的球面波前时,与样品保持固定距离的探测器会记录衍射图案。然后使用迭代相位恢复算法从衍射强度测量中定量恢复物体的复波前。使用各种样品通过实验验证了该方法的可行性。聚焦可调透镜极短的响应时间使得该方法非常适合需要高速成像的应用。