Institute of Modern Optics, Nankai University, Key Laboratory of Optical Information Science and Technology, Ministry of Education, Tianjin 300071, China.
State Key Laboratory of High Field Laser Physics, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China.
Sci Rep. 2014 Jan 24;4:3880. doi: 10.1038/srep03880.
Terahertz (THz) imaging provides cutting edge technique in biology, medical sciences and non-destructive evaluation. However, due to the long wavelength of the THz wave, the obtained resolution of THz imaging is normally a few hundred microns and is much lower than that of the traditional optical imaging. We introduce a sub-wavelength resolution THz imaging technique which uses the THz radiation generated by a femtosecond laser filament in air as the probe. This method is based on the fact that the femtosecond laser filament forms a waveguide for the THz wave in air. The diameter of the THz beam, which propagates inside the filament, varies from 20 μm to 50 μm, which is significantly smaller than the wavelength of the THz wave. Using this highly spatially confined THz beam as the probe, THz imaging with resolution as high as 20 μm (~λ/38 at 0.4 THz) can be realized.
太赫兹(THz)成像是生物学、医学科学和无损评估领域的尖端技术。然而,由于太赫兹波的波长较长,因此获得的太赫兹成像分辨率通常为几百微米,远低于传统的光学成像。我们介绍了一种亚波长分辨率的太赫兹成像技术,该技术使用飞秒激光细丝在空气中产生的太赫兹辐射作为探针。这种方法基于这样一个事实,即飞秒激光细丝在空气中形成了太赫兹波的波导。在细丝内传播的太赫兹光束的直径从 20μm 到 50μm 不等,明显小于太赫兹波的波长。利用这种高度空间限制的太赫兹光束作为探针,可以实现分辨率高达 20μm 的太赫兹成像(在 0.4THz 时约为λ/38)。