1999Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIERequires access

Micromachining of glass materials by laser-induced plasma-assisted ablation (LIPAA) using a conventional nanosecond laser

Jie Zhang, Koji Sugioka, Katsumi Midorikawa

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Abstract

We report precision micromachining of fused quartz and Pyrex glass by laser-induced plasma-assisted ablation (LIPAA) using a conventional nanosecond UV or visible laser. High- quality micrograting structures with periods of 1.06 and 20 micrometers using a phase mask and a mask projection technique, respectively were fabricated by LIPAA. The Fresnel zone pattern was also produced in fused quartz. The hole with the size of 700 micrometers in diameter was fast drilled in fused quartz and Pyrex glass. A possible ablation mechanism was discussed based on the dependence of ablation metal target and glass substrate.

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What this paper is about

We report precision micromachining of fused quartz and Pyrex glass by laser-induced plasma-assisted ablation (LIPAA) using a conventional nanosecond UV or visible laser. High- quality micrograting structures with periods of 1.06 and 20 micrometers using a phase mask and a mask projection technique, respectively were fabricated by LIPAA. The Fresnel zone pattern was also produced in fused quartz. The hole with the size of 700 micrometers in diameter was fast drilled in fused quartz and Pyrex glass. A possible ablation mechanism was discussed based on the dependence of ablation metal target and glass substrate.

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Available abstract

We report precision micromachining of fused quartz and Pyrex glass by laser-induced plasma-assisted ablation (LIPAA) using a conventional nanosecond UV or visible laser. High- quality micrograting structures with periods of 1.06 and 20 micrometers using a phase mask and a mask projection technique, respectively were fabricated by LIPAA. The Fresnel zone pattern was also produced in fused quartz. The hole with the size of 700 micrometers in diameter was fast drilled in fused quartz and Pyrex glass. A possible ablation mechanism was discussed based on the dependence of ablation metal target and glass substrate.

Key concepts: Surface micromachining, Materials science, Laser ablation, Ablation, Nanosecond, Laser, Optics, Borosilicate glass

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