Liu Xi, Ding Chenliang, Gao Xiujun, Shen Xiaoming, Tang Mengbo, Yang Zhenyao, Xu Liang, Kuang Cuifang, Liu Xu
Opt Lett. 2023 Aug 15;48(16):4300-4303. doi: 10.1364/OL.495286.
Three-dimensional (3D) laser nanoprinting with high resolution and low cost is highly desirable for fabricating arbitrary 3D structures with fine feature size. In this work, we use a 405-nm integrated fiber-coupled continuous wave (cw) laser diode to establish an easy-to-build 3D nanoprinting system based on two-step absorption. Two-dimensional (2D) gratings with a sub-150-nm period and 3D woodpile nanostructures with a lateral period of 350 nm have been printed at a low speed. At a faster scan velocity of 1000 µm/s, 2D gratings with sub-200-nm resolution and sub-50-nm linewidth can still be fabricated with laser power less than 1 mW. The two-step absorption of the used benzil initiator enables us to use a second cw laser with 532-nm wavelength to enhance the polymerization with sub-100-nm feature size when starting with insufficient 405-nm laser power, which possess the potential to find applications in high-speed high-resolution parallel-writing and in situ manipulation.
具有高分辨率和低成本的三维(3D)激光纳米打印技术对于制造具有精细特征尺寸的任意3D结构来说是非常理想的。在这项工作中,我们使用一个405纳米集成光纤耦合连续波(cw)激光二极管,基于两步吸收建立了一个易于搭建的3D纳米打印系统。已经以低速打印出了周期小于150纳米的二维(2D)光栅和横向周期为350纳米的3D木堆纳米结构。在1000微米/秒的更快扫描速度下,使用小于1毫瓦的激光功率仍可制造出分辨率低于200纳米且线宽低于50纳米的2D光栅。所使用的二苯乙二酮引发剂的两步吸收使我们能够在405纳米激光功率不足时,使用波长为532纳米的第二个连续波激光来增强特征尺寸小于100纳米的聚合反应,这在高速高分辨率并行写入和原位操作方面具有潜在的应用前景。