Hack Erwin, Zolliker Peter
Opt Express. 2014 Jun 30;22(13):16079-86. doi: 10.1364/OE.22.016079.
A non-monochromatic THz Quantum Cascade Laser and an uncooled micro-bolometer array detector with VGA resolution are used in a beam-splitter free holographic set-up to measure amplitude and phase objects in transmission. Phase maps of the diffraction pattern are retrieved using the Fourier transform carrier fringe method; while a Fresnel-Kirchhoff back propagation algorithm is used to reconstruct the complex object image. A lateral resolution of 280 µm and a relative phase sensitivity of about 0.5 rad are estimated from reconstructed images of a metallic Siemens star and a polypropylene test structure, respectively. Simulations corroborate the experimental results.
在一种无分束器的全息装置中,使用了非单色太赫兹量子级联激光器和具有VGA分辨率的非制冷微测辐射热计阵列探测器,以测量透射中的振幅和相位物体。利用傅里叶变换载波条纹法检索衍射图案的相位图;而菲涅耳-基尔霍夫反向传播算法则用于重建复杂物体图像。从金属西门子星和聚丙烯测试结构的重建图像中分别估计出横向分辨率为280 µm,相对相位灵敏度约为0.5 rad。模拟结果证实了实验结果。