Double-pulse femtosecond laser ablation of the surface of stainless steel with variable interpulse delays
- Authors: Ageev E.I.1, Bychenkov V.Y.2, Veiko V.P.1, Ionin A.A.2, Kudryashov S.I.1,2,3, Petrov A.A.1, Samokhvalov A.A.1
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Affiliations:
- ITMO University
- Lebedev Physical Institute
- National Research Nuclear University MEPhI (Moscow Engineering Physics Institute)
- Issue: Vol 104, No 6 (2016)
- Pages: 421-424
- Section: Miscellaneous
- URL: https://journals.rcsi.science/0021-3640/article/view/159767
- DOI: https://doi.org/10.1134/S0021364016180065
- ID: 159767
Cite item
Abstract
Spectral studies of optical emission from plumes produced via ablation of the surface of stainless steel in the phase explosion regime at different incident fluences by a pair of collinear degenerate femtosecond laser pulses, separated by variable delay time of 0.01–1.5 ns, demonstrate a drastic decrease in atomic emission intensities in a subnanosecond range. This effect was related to “bulk” absorption of the second pump pulse in ablative plumes with near-critical density, achieved during their hydrodynamic expansion on a subnanosecond timescale.
About the authors
E. I. Ageev
ITMO University
Email: sikudr@sci.lebedev.ru
Russian Federation, St. Petersburg, 197101
V. Yu. Bychenkov
Lebedev Physical Institute
Email: sikudr@sci.lebedev.ru
Russian Federation, Moscow, 119991
V. P. Veiko
ITMO University
Email: sikudr@sci.lebedev.ru
Russian Federation, St. Petersburg, 197101
A. A. Ionin
Lebedev Physical Institute
Email: sikudr@sci.lebedev.ru
Russian Federation, Moscow, 119991
S. I. Kudryashov
ITMO University; Lebedev Physical Institute; National Research Nuclear University MEPhI (Moscow Engineering Physics Institute)
Author for correspondence.
Email: sikudr@sci.lebedev.ru
Russian Federation, St. Petersburg, 197101; Moscow, 119991; Moscow, 115409
A. A. Petrov
ITMO University
Email: sikudr@sci.lebedev.ru
Russian Federation, St. Petersburg, 197101
A. A. Samokhvalov
ITMO University
Email: sikudr@sci.lebedev.ru
Russian Federation, St. Petersburg, 197101
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