Naik Dinesh N, Pedrini Giancarlo, Takeda Mitsuo, Osten Wolfgang
Opt Lett. 2014 Apr 1;39(7):1857-60. doi: 10.1364/OL.39.001857.
Spatial and spectral information holds the key for characterizing incoherently illuminated or self-luminous objects, as well as for imaging fluorescence. We propose spectrally resolved incoherent holography using a multifunctional Mach-Zehnder interferometer that can introduce both a radial shear and a variable time delay between the interfering optical fields and permits the measurement of both spatial and temporal coherence functions, from which a 3D spatial and spectral image of the object is reconstructed. We propose and demonstrate the accurate 3D imaging of the object spectra by in situ calibration.
空间和光谱信息是表征非相干照明或自发光物体以及荧光成像的关键。我们提出了一种使用多功能马赫-曾德尔干涉仪的光谱分辨非相干全息术,该干涉仪可以在干涉光场之间引入径向剪切和可变时间延迟,并允许测量空间和时间相干函数,由此重建物体的三维空间和光谱图像。我们通过原位校准提出并演示了物体光谱的精确三维成像。