Semiconductor Physics, Quantum Electronics and Optoelectronics, 11 (1) P. 090-095 (2008).
DOI: https://doi.org/10.15407/spqeo11.01.090


References

1. S. Juodkazis, K. Nishimura, S. Tanaka, et al., Laser-induced microexplosion confined in the bulk of a sapphire crystal: evidence of multimegabar pressures // Phys. Rev. Lett. 96, 166101 (2006).
https://doi.org/10.1103/PhysRevLett.96.166101
2. J. Tadano, H. Kumakura, Y. Ito, Coupling of focused laser pulse to surfaces of transparent materials studied by time-resolved imaging technique // Appl. Phys. A 79(4-6), p. 1031-1033 (2004).
https://doi.org/10.1007/s00339-004-2621-2
3. A.B. Savel'ev-Trofimov, Control over properties of the dense plasma created by a femtosecond laser pulse and the initiation of low-energy nuclear processes. Abstract of the Doctoral Thesis (Phys.- Math.), Moscow, 2003 (in Russian).
4. T.E. Itina, F. Vidal, Ph. Delaporte, M. Sentis, Numerical study of ultra-short laser ablation of metals and of laser plume dynamics // Appl. Phys. A 79 (4-6), p. 1089-1092 (2004).
https://doi.org/10.1007/s00339-004-2647-5
5. R. Kelly, A. Miotello, Comments on explosive mechanisms of laser sputtering // Appl. Surf. Sci. 96-98, p. 205-215 (1996).
https://doi.org/10.1016/0169-4332(95)00481-5
6. K. Henriksson, Molecular dynamics simulation of ion and cluster bombardment of metal surfaces - craters and sputtered clusters: Master's Thesis: Helsinki, 87 p. (2001).
7. B. Gakovi, M. Trtica, P. Panjan et al., Surface modification of the Cr-based coatings by the pulsed TEA CO2 laser // Appl. Phys. A 79(4-6), p. 1353- 1355 (2004).
https://doi.org/10.1007/s00339-004-2778-8
8. А.D. Suprun, L.V. Shmeleva, The general statement of the problem on the interaction of an intense energy flow with a surface // Scientific notes, Proc. M.P. Dragomanov National Pedagogical University, Kyiv, 2002, p. 199-203 (in Ukrainian).
9. L.V. Shmeleva, S.M. Yezhov, A.D. Suprun, S.Ya. Shevchenko, Theory of plasma dynamics for the solid matter surface destruction by a pulse of power irradiation // Ukr. J. Phys. 51(8), p.788-794 (2006).
10. L.D. Landau, E.M. Lifshits, Elasticity Theory. Nauka, Moscow, 1987 (in Russian).
11. L.D. Landau, E.M. Lifshits, Hydrodynamics. Nauka, Moscow, 1986 (in Russian).
12. D.K.Y. Low, L. Li, A.G. Corfe, The influence of assist gas on the mechanism of material ejection and removal during laser percussion drilling // Proc. Inst. Mech. Eng. B 214, p. 521-527 (2000).
https://doi.org/10.1243/0954405001518215
13. A.D. Suprun, P.Е. Il'nitskii, On a possibility of the iteration solution of a nonlinear heat conductivity problem // Visnyk Kyiv Nat. Univ. (Phys.-Math.) No. 2, p. 513-520 (1999) (in Ukrainian).
14. A.D. Suprun, K.V. Usenko, Determination of the failure threshold of a material surface by both the magnitude of the flow of pulse emission and the aftereffect duration of a pulse // Poverkhnost'. Fizika, Khimiya, Mekhanika 6, p. 118-124 (1994) (in Russian).
15. А.D. Suprun, L.V. Shmeleva, Exact account for the absorption non-linearity in problems of surface laser treatment // Functional Materials 4(2), p. 285- 290 (2000).
16. А.D. Suprun, L.V. Shmeleva, A general solution of the heat conductivity problem with an implicitly given inhomogeneity of the equation // Visnyk Kyiv Nat. Univ. (Phys.-Math.) No. 3, p. 480-485 (2000) (in Ukrainian).
17. А.D. Suprun, V.M. Turkovskii, K.V. Usenko, Dependence of the threshold characteristics of the failure of a material by the pulse emission on the real conditions of absorption // Poverkhnost'. Fizika, Khimiya, Mekhanika 1, p. 88-94 (1995) (in Russian).