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Axicon-hyperbolic lens for reflectivity measurements of curved surfaces

机译:轴锥双曲透镜,用于测量曲面的反射率

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We present a quasioptical element design that transforms a diverging Gaussian beam to an approximate Bessel beam. The elements are designed to deliver millimeter waves to a curved surface in reflectivity measurements. Compared to canonical focused quasioptical designs, such as the Gaussian-beam telescope, diffraction from an axicon surface allows for significant relaxation in alignment requirements. This research is motivated by in vivo cornea measurements where achieving optimal optical alignment is difficult. Combined axicon-hyperbolic lenses were designed for 220-330 GHz and fabricated of TOPAS, a low-loss material at millimeter waves. The lens performance is evaluated with near-field measurements. The output beam is close to the Bessel beam with the radial wave number 94-96 % of the design at frequencies below 280 GHz. The match is maintained from close to the axicon to the predicted maximum range of the approximate Bessel beam. Agreement between theory and experiment is verified up to 51 mm and 87 mm for axicon external cone angles of 25 and 15 degrees, respectively. The measured on-axis power density peaks close to the theoretical location below280 GHz. Reflection measurements from a spherical surface were obtained and the results suggest in-phase reflection back to the transceiver. Compared to the Gaussian beam, the in-range alignment requirement can be relaxed by an order of magnitude with the Bessel beam.
机译:我们提出了一种准光学元件设计,该设计将发散的高斯光束转换为近似的贝塞尔光束。这些元件设计用于在反射率测量中将毫米波传递到曲面。与规范聚焦准光学设计(例如高斯光束望远镜)相比,轴锥表面的衍射可显着降低对准要求。这项研究受到体内角膜测量的推动,在这些情况下很难实现最佳的光学对准。组合式双曲线双曲面透镜设计用于220-330 GHz,由TOPAS(毫米波低损耗材料)制成。镜头性能通过近场测量进行评估。在低于280 GHz的频率下,输出光束接近贝塞尔光束,其径向波数为设计的94-96%。维持从接近轴锥到近似贝塞尔光束的预测最大范围的匹配。对于轴锥外锥角分别为25度和15度的情况,理论和实验之间的一致性分别达到了51 mm和87 mm。测得的轴上功率密度峰值接近280 GHz以下的理论位置。获得了来自球面的反射测量,结果表明同相反射回到收发器。与高斯光束相比,贝塞尔光束可将范围内对准要求放宽一个数量级。

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