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Terahertz solid immersion microscopy for sub-wavelength-resolution imaging of biological objects and tissues

机译:用于生物物体和组织的亚波长分辨率成像的太赫兹固体浸没显微镜

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We have developed a method of terahertz (THz) solid immersion microscopy for imaging of biological objects and tissues. It relies on the solid immersion lens (SIL) employing the THz beam focusing into the evanescent-field volume and allowing strong reduction in the dimensions of the THz beam caustic. By solving the problems of the sample handling at the focal plane and raster scanning of its surface with the focused THz beam, the THz SIL microscopy has been adapted for imaging of soft tissues. We have assembled an experimental setup based on a backward-wave oscillator, as a continuous-wave source operating at the wavelength of λ= 500 μm, and a Golay cell, as a detector of the THz wave intensity. By imaging of the razor blade, we have demonstrated advanced 0.2A-resolution of the proposed THz SIL configuration. Using the experimental setup, we have performed THz imaging of a mint leaf revealing its sub-wavelength features. The observed results highlight a potential of the THz SIL microscopy in biomedical applications of THz science and technology.
机译:我们开发了一种用于成像生物物体和组织的Terahertz(Thz)固体浸没显微镜的方法。它依赖于采用THz光束的固体浸没透镜(SIL)聚焦到渐逝场体积并允许THz烧杯的尺寸的强烈降低。通过用聚焦的THz光束求解焦平面和光栅扫描的样品处理和光栅扫描的问题,THz SIL显微镜已经适用于软组织的成像。我们已经基于反向波振荡器组装了实验装置,作为在λ=500μm的波长的连续波源,以及作为THz波强度的检测器的多个波形电池。通过对剃刀刀片进行成像,我们已经证明了提前的0.2A分辨率的提出的THz SIL配置。使用实验设置,我们已经执行了薄荷叶的成像,揭示其子波长特征。所观察结果突出了THZ SIL显微镜在科技和技术的生物医学应用中的潜力。

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