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Spallative ablation of dielectrics by X-ray laser

Authors :
Inogamov, N. A.
Zhakhovsky, V. V.
Faenov, A. Ya.
Khokhlov, V. A.
Shepelev, V. V.
Skobelev, I. Yu.
Kato, Y.
Tanaka, M.
Pikuz, T. A.
Kishimoto, M.
Ishino, M.
Nishikino, M.
Fukuda, Y.
Bulanov, S. V.
Kawachi, T.
Petrov, Yu. V.
Anisimov, S. I.
Fortov, V. E.
Publication Year :
2009

Abstract

Short laser pulse in wide range of wavelengths, from infrared to X-ray, disturbs electron-ion equilibrium and rises pressure in a heated layer. The case where pulse duration $\tau_L$ is shorter than acoustic relaxation time $t_s$ is considered in the paper. It is shown that this short pulse may cause thermomechanical phenomena such as spallative ablation regardless to wavelength. While the physics of electron-ion relaxation on wavelength and various electron spectra of substances: there are spectra with an energy gap in semiconductors and dielectrics opposed to gapless continuous spectra in metals. The paper describes entire sequence of thermomechanical processes from expansion, nucleation, foaming, and nanostructuring to spallation with particular attention to spallation by X-ray pulse.

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.0912.3184
Document Type :
Working Paper
Full Text :
https://doi.org/10.1007/s00339-010-5764-3