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Ablation dynamics of solids heated by femtosecond laser pulses

  • B. Rethfeld
  • , K. Sokolowski-Tinten
  • , V. V. Temnov
  • , S. I. Kudryashov
  • , J. Bialkowski
  • , A. Cavalleri
  • , D. Von Der Linde
  • University of Duisburg-Essen

Research output: Contribution to journalConference articlepeer-review

Abstract

Ultrafast time resolved microscopy of femtosecond laser irradiated surfaces reveals a universal feature of the ablating surface on nanosecond time scale. All investigated materials show rings in the ablation zone, which were identified as an interference pattern (Newton fringes). Optically sharp surfaces occur during expansion of the heated material as a result of anomalous hydrodynamic expansion effects. Experimentally, the rings are observed within a certain fluence range which strongly depends on material parameters. The lower limit of this fluence range is the ablation threshold. We predict a fluence ratio between the upper and the lower fluence limit approximately equal to the ratio of critical temperature to boiling temperature at normal pressure. This estimate is experimentally confirmed on different materials (Si, graphite, Au, Al).

Original languageEnglish
Pages (from-to)186-196
Number of pages11
JournalProceedings of SPIE - The International Society for Optical Engineering
Volume4423
DOIs
Publication statusPublished - 1 Dec 2000
Externally publishedYes
EventNonreasonant Laser-Matter Interaction (NLMI-10) - St.Petersburg-Pushkin, Russian Federation
Duration: 21 Aug 200123 Aug 2001

Keywords

  • Ablation
  • Equation of state
  • Femtosecond laser pulses
  • Phase transition
  • Time-resolved microscopy

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