Liu X, Li Q, Sikora A, Sentis M, Utéza O, Stoian R, Zhao W, Cheng G, Sanner N
Opt Express. 2019 Mar 4;27(5):6996-7008. doi: 10.1364/OE.27.006996.
In order to control the length of micro-channels ablated at the surface of dielectrics, we use annular filtering apertures for tailoring the depth of focus of micrometric Gaussian-Bessel beams. We identify experimentally and numerically the appropriate beam truncation that promotes a smooth axial distribution of intensity with a small elongation, suitable for processing micro-channels of small aspect ratio. Single-shot channel fabrication is demonstrated on the front surface of a fused silica sample, with sub-micron diameter, high-quality opening, and depth of few micrometers, using 1 ps low-energy (< 0.45 µJ) pulse. Finally, we realize 10 × 10 matrices of densely packed channels with aspect ratio ~5 and a spatial period down to 1.5 μm, as a prospective demonstration of direct laser fabrication of 2D photonic-crystal structures.
为了控制在电介质表面烧蚀的微通道长度,我们使用环形滤波孔径来调整微米级高斯 - 贝塞尔光束的焦深。我们通过实验和数值方法确定了合适的光束截断方式,这种方式能促进强度在轴向上的平滑分布,且伸长量较小,适用于加工小纵横比的微通道。利用1皮秒低能量(< 0.45 μJ)脉冲,在熔融石英样品的前表面展示了单次通道制造,制造出的通道直径为亚微米级,开口质量高,深度为几微米。最后,我们实现了纵横比约为5且空间周期低至1.5μm的10×10密集排列通道矩阵,作为二维光子晶体结构直接激光制造的前瞻性演示。