论文标题
复杂的振幅傅立叶单金成像通过相干结构照明
Complex-amplitude Fourier single-pixel imaging via coherent structured illumination
论文作者
论文摘要
我们提出了一种具有连贯的结构化照明的复杂振幅傅立叶单像素成像(CFSI)的方法,以获取对象的振幅和相位。在提出的方法中,一个对象由一系列相干结构的光场进行说明,这些光场由仅相位的空间光调制器生成,该对象可以通过单像素光电量来顺序获取对象的复杂傅立叶光谱。然后,可以通过施加逆傅里叶变换来直接检索所需的复合振幅图像。我们通过几种不同类型的对象实验实现了此CFSI。实验结果表明,所提出的方法提供了具有高质量和稳定构型的有希望的复杂振幅成像方法。因此,它可能在光学计量学和生物医学科学中发现广泛的应用。
We propose a method of complex-amplitude Fourier single-pixel imaging (CFSI) with coherent structured illumination to acquire both the amplitude and phase of an object. In the proposed method, an object is illustrated by a series of coherent structured light fields which are generated by a phase-only spatial light modulator, the complex Fourier spectrum of the object can be acquired sequentially by a single-pixel photodetector. Then the desired complex-amplitude image can be retrieved directly by applying an inverse Fourier transform. We experimentally implemented this CFSI with several different types of objects. The experimental results show that the proposed method provides a promising complex-amplitude imaging approach with high quality and a stable configuration. Thus, it might find broad applications in optical metrology and biomedical science.