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140 GHz Ultra-Long Bessel–Like Beam with Near-Wavelength Beamwidth

机译:140 GHz超长贝尔贝尔般的梁具有近波长波束宽度

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摘要

The Bessel–Gauss beam has outstanding features, such as long depth of focus (DOF) and super resolution for nondestructive imaging inspection. However, most approaches for generating a nondiffractive beam have mainly focused on extending the DOF. In this study, the ultra-long high-resolution Bessel–like beam was first demonstrated in a sub-THz wave range (140 GHz). An axicon lens having an apex angle of 110° was used to generate the highly focused Bessel–like beam. To extend the depth of focus, we varied the incident beam angle on the axicon by moving the first lens distance. With the newly developed beam profiler, 3D beam profiles were acquired for characterizing in detail the beam propagation. As a result, even if the depth of focus was 72 times (154 mm) the source wavelength (2.143 mm), the focusing beamwidth was simultaneously maintained at 1.4 times (3.0 mm) the wavelength (i.e., the near-wavelength beamwidth). An ultra-long needle beam of near-wavelength size can promote the applicability of the sub-THz imaging technique in noninvasive sensing applications, such as computer tomography, materials inspection, and through-the-wall-imaging.
机译:贝塞尔高斯梁具​​有出色的功能,如长的焦深(DOF)和无损成像检测的超级分辨率。然而,大多数用于产生不合梁的方法主要集中在延长DOF上。在该研究中,首先在子THz波范围(140GHz)中进行超长的高分辨率贝塞尔状光束。使用具有110°的顶角的轴坐标透镜来产生高度聚焦的贝塞尔状梁。为了延长焦深,我们通过移动第一透镜距离来改变轴的入射光束角。利用新开发的光束分析器,获取3D光束轮廓以详细描述光束传播。结果,即使焦点为72次(154mm)源波长(2.143mm),聚焦束宽度同时保持在波长(即,近波长波束宽度)的1.4倍(3.0mm)。超长针束近波长尺寸可以促进子THZ成像技术在非侵入性传感应用中的适用性,例如计算机断层扫描,材料检验和穿透成像。

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