Yang Qing, Tong Siyu, Chen Feng, Deng Zefang, Bian Hao, Du Guangqing, Yong Jiale, Hou Xun
Opt Lett. 2015 Nov 15;40(22):5359-62. doi: 10.1364/OL.40.005359.
Microlenses with multiple focal lengths play an important role in three-dimensional imaging and the real-time detection of unconfined or fluctuating targets. In this Letter, we present a novel method of fabricating lens-on-lens microstructures (LLMs) using a two-step femtosecond laser wet etching process. A 3×3 LLM array was made with a diameter of 129.0 μm. The fabricated LLM has two focal lengths, 80.4 and 188.7 μm, showing excellent two-level focusing and imaging abilities. Its size and focal length can be controlled by adjusting laser power and etching time. Its surface roughness remains about 61 nm. This simple and efficient method for large-scale production of LLMs has potential applications in diverse optical systems.
具有多个焦距的微透镜在三维成像以及对无约束或波动目标的实时检测中发挥着重要作用。在本信函中,我们展示了一种使用两步飞秒激光湿法蚀刻工艺制造透镜叠透镜微结构(LLM)的新颖方法。制作了一个直径为129.0μm的3×3 LLM阵列。所制造的LLM具有80.4μm和188.7μm两个焦距,展现出出色的两级聚焦和成像能力。其尺寸和焦距可通过调整激光功率和蚀刻时间来控制。其表面粗糙度保持在约61nm。这种用于大规模生产LLM的简单高效方法在各种光学系统中具有潜在应用。