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Terahertz Near-Field Imaging of Biological Samples With Horn Antenna-Excited Probes

机译:霍恩天线激励探针对生物样品的太赫兹近场成像

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We report terahertz near-field imaging of different biological samples with metallic, Teflon, and quartz (dielectric) probes excited with a horn antenna and using a terahertz vector network analyzer. The terahertz decay length ( Ld ) of the metallic probe was 445 μm at 0.8375 THz ( λfree∼ 375 μm ), while the Teflon probe had Ld of 230 μm at 1.0422 THz ( λfree∼ 288 μm ), and the quartz probe had Ld of 75 μm at 0.8024–0.8424 THz ( λfree∼288μm ). With these probes, we imaged a slice of mouse brain, a dwarf umbrella tree leaflet section, and a boxelder bug wing section. In the terahertz image of the mouse brain slice, we observed the outline of the different regions of the brain slice. In the terahertz image of the leaflet, the venation in the leaflet (because of its relatively high water content) was clearly observed at terahertz which was not well defined in its optical image. In the terahertz image of the bug wing section, the transition from the thick corium region to the thin membrane region had a profile that was different from its optical image. Finally, we demonstrated the capability of the near-field imaging system for imaging through a dielectric slab with internal structure that was clearly detected at terahertz, while it was completely concealed optically.
机译:我们报告了不同的生物样品的太赫兹近场成像,这些金属,铁氟龙和石英(介电)探针受到喇叭天线的激励,并使用太赫兹矢量网络分析仪。金属探针在0.8375 THz(λfree〜375μm)时的太赫兹衰减长度(Ld)为445μm,而铁氟龙探针在1.0422 THz(λfree〜288μm)下的Ld为230μm,石英探针的Ld为。 75μm在0.8024–0.8424 THz(λfree〜288μm)处。使用这些探针,我们为老鼠的大脑切片,矮小的伞形树小叶部分和黄粉虫翅膀部分成像。在小鼠脑切片的太赫兹图像中,我们观察到了脑切片不同区域的轮廓。在小叶的太赫兹图像中,在太赫兹处清晰地观察到小叶中的脉动(由于其含水量相对较高),这在光学图像中并未得到很好的定义。在虫翅区的太赫兹图像中,从厚皮层区域到薄膜区域的过渡具有与其光学图像不同的轮廓。最后,我们展示了近场成像系统通过具有内部结构的介电平板成像的能力,该介电平板在太赫兹清晰可见,而在光学上却被完全隐藏。

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