In-process monitoring in laser grooving with line-shaped femtosecond pulses using optical coherence tomography

S. Hasegawa, M. Fujimoto, Toshihisa Atsumi, Y. Hayasaki
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引用次数: 8

Abstract

A line-shaped beam is useful for increasing the processing speed in laser grooving and scribing. In laser grooving, depth control of the processed structure is important for performing precise processing. In this paper, in-process monitoring of the depth of a structure formed by femtosecond laser processing with a line-shaped beam using swept-source optical coherence tomography (SS-OCT) was demonstrated. In the evaluation of the SS-OCT system, the depth resolution, measurement accuracy, and axial measurable range were 15.8 μm, ±2.5 μm and 5.3 mm, respectively. In laser grooving, the structural shape and the distribution of deposited debris were successfully monitored. The measured depth agreed well with the depth obtained using a laser confocal microscope. The proposed method will be effective for precise laser processing with feedback control of the laser parameters based on in-process monitoring of the processed structure.
利用光学相干层析成像技术监测线形飞秒脉冲激光开槽过程
在激光开槽和划线加工中,线形光束有助于提高加工速度。在激光开槽中,被加工结构的深度控制是实现精确加工的重要因素。本文演示了利用扫描源光学相干层析成像(SS-OCT)对飞秒激光加工形成的线状光束的深度进行过程监测。在对SS-OCT系统的评价中,深度分辨率为15.8 μm,测量精度为±2.5 μm,轴向测量范围为5.3 mm。在激光开槽中,成功地监测了沉积碎屑的结构形状和分布。测量的深度与激光共聚焦显微镜测得的深度吻合良好。该方法在对加工结构进行过程监测的基础上对激光参数进行反馈控制,可有效地实现精密激光加工。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
10.90
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0.00%
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