Opt Lett. 2019 Apr 1;44(7):1600-1602. doi: 10.1364/OL.44.001600.
In this Letter, a low-cost refractive convex microlens array device based on infrared a polymer is fabricated by a nanoimprinting technique. The device integrates more than 4000 microlenslets within a footprint of 10 mm×10 mm. The surface quality, spectral transmittance, imaging resolution, and surface damage threshold of the device have been fully characterized. The IR imaging and parallel laser inscription experiments confirm the remarkable optical performance of the fabricated device. Owing to the merits of high optical quality, low fluence lose, and simple fabrication, this device is promising in cutting-edge IR applications, such as IR imaging, laser fabrication, and so on.
在这封信件中,我们通过纳米压印技术制作了一种基于红外聚合物的低成本折射凸面微透镜阵列器件。该器件在 10mm×10mm 的面积内集成了 4000 多个微透镜。我们充分表征了器件的表面质量、光谱透过率、成像分辨率和表面破坏阈值。IR 成像和平行激光写入实验证实了所制作器件的卓越光学性能。由于具有高质量光学性能、低能量损耗和简单的制造工艺等优点,该器件在前沿的 IR 应用中具有广阔的应用前景,例如 IR 成像、激光加工等。