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Laser Micro-machining Using Near-field Optics

机译:使用近场光学元件的激光微加工

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摘要

Solid immersion lenses (SIL) facilitate high numerical aperture (NA) and consequent sub-wavelength diffraction limited focusing in near-field optics based systems. Such systems are in commercial and research use for various applications including near-field scanning optical microscopy, ultra-high-density magneto-optic data storage and near-field nanolithography. Here, we present a novel manufacturing method using SIL-based near-field optics for laser-induced patterning on silicon wafers. The near-field effect of SILs was investigated by using hemispherical lenses made of three different materials (BK7, Sapphire, LaSFN9) to superfocus an incident Q-switched, 532 nm Nd:YAG laser beam transmitted through a focusing objective. This optical arrangement achieved a laser-processed feature resolution near the diffraction limit in air. Results of experiments that were conducted at various processing conditions to investigate the effects of varying incident laser power (with peak pulse power less than 1 W), pulse width, number of pulses and size of SIL on processed feature size and resolution are presented. Experimental results are compared with numerical simulations using the simplified model.
机译:固态浸没透镜(SIL)有助于在基于近场光学系统的系统中实现高数值孔径(NA)并因此限制了亚波长衍射。这种系统在商业和研究中用于各种应用,包括近场扫描光学显微镜,超高密度磁光数据存储和近场纳米光刻。在这里,我们提出了一种新颖的制造方法,该方法使用基于SIL的近场光学器件在硅片上进行激光诱导的图案化。通过使用由三种不同材料(BK7,蓝宝石,LaSFN9)制成的半球形透镜,对通过聚焦物镜传输的调Q的532 nm Nd:YAG入射激光束进行超聚焦,研究了SIL的近场效应。该光学装置实现了在空气中接近衍射极限的激光加工特征分辨率。给出了在各种处理条件下进行的实验结果,以研究变化的入射激光功率(峰值脉冲功率小于1 W),脉冲宽度,脉冲数和SIL大小对处理后的特征尺寸和分辨率的影响。将实验结果与使用简化模型的数值模拟进行比较。

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