4.7 Article

The influence of the focus position on laser machining and laser micro-structuring monocrystalline diamond surface

期刊

OPTICS AND LASERS IN ENGINEERING
卷 105, 期 -, 页码 60-67

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.optlaseng.2018.01.002

关键词

Laser micro-machining; Sub-nanosecond pulsed laser; Diamond; Micro-structure surface; Raman analysis

类别

资金

  1. National Natural Science Foundation of China [51405108, 51405111]

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Micro-structured surface on diamond is widely used in microelectronics, optical elements, MEMS and NEMS components, ultra-precision machining tools, etc. The efficient micro-structuring of diamond material is still a challenging task. In this article, the influence of the focus position on laser machining and laser micro-structuring monocrystalline diamond surface were researched. At the beginning, the ablation threshold and its incubation effect of monocrystalline diamond were determined and discussed. As the accumulated laser pulses ranged from 40 to 5000, the laser ablation threshold decreased from 1.48 J/cm(2) to 0.97 J/cm(2). Subsequently, the variation of the ablation width and ablation depth in laser machining were studied. With enough pulse energy, the ablation width mainly depended on the laser propagation attributes while the ablation depth was a complex function of the focus position. Raman analysis was used to detect the variation of the laser machined diamond surface after the laser machining experiments. Graphite formation was discovered on the machined diamond surface and graphitization was enhanced after the defocusing quantity exceeded 45 mu m. At last, several micro-structured surfaces were successfully fabricated on diamond surface with the defined micro-structure patterns and structuring ratios just by adjusting the defocusing quantity. The experimental structuring ratio was consistent with the theoretical analysis. (C) 2018 Elsevier Ltd. All rights reserved.

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