JOURNAL ARTICLE

<title>Infrared free-electron laser photoablation of diamond films</title>

J. SturmannZ. MárkaM. M. AlbertR. G. AlbridgeJonathan M. GilliganGunter LuepkeSankalp Kumar SinghJeffrey L. DavidsonW. HusinskyN. H. Tolk

Year: 2001 Journal:   Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIE Vol: 4423 Pages: 206-211   Publisher: SPIE

Abstract

We report first IR free-electron laser experiments to compare and elucidate the effects of surface-localized vibrational excitation versus bulk vibrational excitation on the ablation of polycrystalline diamond. The measured ablation yield values as a function of laser intensity indicate the existence of two separate thresholds. The lower intensity thresholds is identified as the ablation threshold, and the higher intensity threshold is associated with the formation of a plasma plume. The wavelength dependences of both thresholds indicate that eh C-H absorption occurring at surfaces and grain boundaries does not play a significant role in the ablation process. However, both thresholds are lower when the laser is resonant with the two-phonon bulk absorption band. These findings are consistent with the model that a rapid laser- induced phase transition to graphite is responsible for the low-intensity ablation of diamond at and above the first threshold.

Keywords:
Laser Ablation Diamond Materials science Laser ablation Free-electron laser Excitation Photoexcitation Absorption (acoustics) Intensity (physics) Infrared Analytical Chemistry (journal) Atomic physics Chemistry Optics Physics

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Topics

Diamond and Carbon-based Materials Research
Physical Sciences →  Materials Science →  Materials Chemistry
Laser-induced spectroscopy and plasma
Physical Sciences →  Engineering →  Mechanics of Materials
High-pressure geophysics and materials
Physical Sciences →  Earth and Planetary Sciences →  Geophysics

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