A. Borowiec and H. K. Haugen, Subwavelength ripple formation on the surfaces of compound semiconductors irradiated with femtosecond laser pulses, Applied Physics Letters, vol.82, issue.25, pp.4462-4464, 2003.
DOI : 10.1063/1.1586457

R. Wagner and J. Gottmann, Sub-wavelength ripple formation on various materials induced by tightly focused femtosecond laser radiation, Journal of Physics: Conference Series, vol.59, pp.333-337, 2007.
DOI : 10.1088/1742-6596/59/1/070

M. Huang, F. Zhao, Y. Cheng, N. Xu, and Z. Xu, Origin of Laser-Induced Near-Subwavelength Ripples: Interference between Surface Plasmons and Incident Laser, ACS Nano, vol.3, issue.12, pp.4062-4070, 2009.
DOI : 10.1021/nn900654v

U. Chakravarty, R. Ganeev, P. Naik, J. Chakera, M. Babu et al., Nano-ripple formation on different band-gap semiconductor surfaces using femtosecond pulses, Journal of Applied Physics, vol.109, issue.8, p.84347, 2011.
DOI : 10.1063/1.3580329

J. Bonse, J. Krüger, S. Höhm, and A. Rosenfeld, Femtosecond laser-induced periodic surface structures, Journal of Laser Applications, vol.24, issue.4, p.42006, 2012.
DOI : 10.2351/1.4712658

URL : https://opus4.kobv.de/opus4-bam/frontdoor/index/index/docId/22325

J. E. Sipe, J. F. Young, J. Preston, and H. V. , Laser-induced periodic surface structure. I. Theory, Physical Review B, vol.27, issue.2, pp.1141-1154, 1983.
DOI : 10.1103/PhysRevB.27.1141

P. Desai, Thermodynamic Properties of Iron and Silicon, Journal of Physical and Chemical Reference Data, vol.15, issue.3, pp.967-983, 1986.
DOI : 10.1063/1.555761

A. L. Magna, P. Alippi, V. Privitera, G. Fortunato, M. Camalleri et al., A phase-field approach to the simulation of the excimer laser annealing process in Si, Journal of Applied Physics, vol.95, issue.9, pp.4806-4814, 2004.
DOI : 10.1063/1.1690861

W. Rhim and K. Ohsaka, Thermophysical properties measurement of molten silicon by high-temperature electrostatic levitator: density, volume expansion, specific heat capacity, emissivity, surface tension and viscosity, Journal of Crystal Growth, vol.208, issue.1-4, pp.313-321, 2000.
DOI : 10.1016/S0022-0248(99)00437-6

D. Korfiatis, K. Thoma, and J. Vardaxoglou, Conditions for femtosecond laser melting of silicon, Journal of Physics D: Applied Physics, vol.40, issue.21, pp.6803-6808, 2007.
DOI : 10.1088/0022-3727/40/21/047

H. Versteeg and W. Malalasekera, An Introduction to Computational Fluid Dynamics -The Finite Volume Method, 2007.

W. H. Press, S. A. Teukolsky, W. T. Vetterling, and B. P. Flannery, Numerical Recipes: The Art of Scientific Computing, 2007.

J. Bonse, M. Munz, and H. Sturm, Structure formation on the surface of indium phosphide irradiated by femtosecond laser pulses, Journal of Applied Physics, vol.97, issue.1, p.13538, 2005.
DOI : 10.1063/1.1827919

J. Bogdanowicz, M. Gilbert, N. Innocenti, S. Koelling, B. Vanderheyden et al., Light absorption in conical silicon particles, Optics Express, vol.21, issue.3, pp.3891-3896, 2013.
DOI : 10.1364/OE.21.003891

M. Huang, Y. Cheng, F. Zhao, and Z. Xu, The significant role of plasmonic effects in femtosecond laser-induced grating fabrication on the nanoscale, Annalen der Physik, vol.3, issue.198, pp.74-86, 2013.
DOI : 10.1002/andp.201200136

A. Vorobyev and C. Guo, Antireflection effect of femtosecond laser-induced periodic surface structures on silicon, Optics Express, vol.19, issue.S5, pp.1031-1036, 2011.
DOI : 10.1364/OE.19.0A1031

J. Bonse, All-optical characterization of single femtosecond laser-pulse-induced amorphization in silicon, Applied Physics A, vol.81, issue.198, pp.63-66, 2006.
DOI : 10.1007/s00339-006-3583-3

A. Esser, W. Kütt, M. Strahnen, G. Maidorn, and H. Kurz, Femtosecond transient reflectivity measurements as a probe for process-induced defects in silicon, Applied Surface Science, vol.46, issue.1-4, pp.446-450, 1990.
DOI : 10.1016/0169-4332(90)90187-5

S. Sundaram and E. Mazur, Inducing and probing non-thermal transitions in semiconductors using femtosecond laser pulses, Nature Materials, vol.1, issue.4, pp.217-224, 2002.
DOI : 10.1038/nmat767

D. Der-linde and K. Sokolowski-tinten, The physical mechanisms of short-pulse laser ablation, Appl. Surf. Sci, pp.154-155, 2000.