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[15] L. A. Emmert, M. Mero, W. Rudolph, “Modeling the effect of native and laser-induced states on the dielectric breakdown of wide band gap optical ma- terials by multiple subpicosecond laser pulses,” J. Appl. Phys. 108 , 0435523 (2010 [16] M. Mende, S. Gunster, H. Ehlers, D. Ristau, “Op- tical Properties of Ion Beam Sputtered Oxide Mix- ture Coatings,” Optical Interference Coatings, OSA Technical Digest, ThA4 (2010). [17] M. J. Webber, “Handbook of optical materials,” CRC Press (2003) [18] T. S. Moss, “a completer,” Proc. Phys. Soc. Lond. B 63 167 (1950) [19] N.M. Ravindra, P. Ganapathy, J. Choi, “Energy gaprefractive index relations in semiconductors An overview,” Infrared Physics and Technology 50 , 21 (2007). [20] P.J.L. Herve, L.K.J. Vandamme, “a completer,” In- frared Phys. 35 , 609 (1994). [21] ISO 21254:2011, “Test methods for laser-induced damage threshold,” International Organization for Standardization. [22] M. Lenzner, J. Kruger, S. Sartania, Z. Cheng, C. Spielmann, G. Mourou, W. Kautek, F. Krausz, “Femtosecond Optical Breakdown in Di- electrics,”Phys. Rev. Lett. 80 , 4076 (1998). [23] W. Kautek, J. Kruger, M. Lenzner, S. Sartania, C. Spielmann, F. Krausz “Laser ablation of dielectrics with pulse durations between 20 fs and 3 ps,”Appl. Phys. Lett. 69 , 3146 (1996).
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10 [24] A.-C. Tien, S. Backus, H. Kapteyn, M. Murnane, G. Mourou, “Short-Pulse Laser Damage in Trans- parent Materials as a Function of Pulse Dura- tion,”Phys. Rev. Lett. 82 , 3883 (1999). [25] N. Sanner, O. Ut´ eza, B. Chimier, M. Sentis, P. Las- sonde, F. L´ egar´ e, J. C. Kieffer “Toward determinism in surface damaging of dielectrics using few-cycle laser pulses,”Appl. Phys. Lett. 96 , 071111 (2010). [26] T.A. Jia, H.X. Chen, M. Huang, F.L. Zhao, X.X. Li, S.Z. Xu, H.Y. Sun, D.H. Feng, C.B. Li, X.F. Wang, R.X. Li, Z.Z. Xu,X.K. He, H. Kuroda, “Ultraviolet- infrared femtosecond laser-induced damage in fused silica and CaF2 crystals,” Phys. Rev. B 73 , 054105 (2006). [27] J. Siegel, D. Puerto, W. Gawelda, G. Bachelier, J. Solis “Plasma formation and structural modifica- tion below the visible ablation threshold in fused sil- ica upon femtosecond laser irradiation,”Appl. Phys. Lett. 91 , 082902 (2007). [28] S.W. Winkler, I.M. Burakov, R. Stoian, N.M. Bul- gakova, A. Husakou, A. Mermillod-Blondin, A. Rosenfeld, D. Ahkenasi, I.V. Hertel “Transient re- sponse of dielectric materials exposed to ultrafast laser radiation,” Appl. Phys. A 84 , 413 (2006). [29] D. Puerto, J. Siegel, W. Gawelda, M. Galvan- Sosa, L. Ehrentraut J. Bonse, J. Solis “Dynamics of plasma formation, relaxation, and topography modification induced by femtosecond laser pulses in crystalline and amorphous dielectrics,” J. Opt. Soc. Am. B 27 , 1065 (2010). [30] I. Jovanovic, C. Brown, B. Wattellier, N. Nielsen, W. Molander, B. Stuart, D. Pennington, C. P. J. Barty “Precision short-pulse damage test station utilizing optical parametric chirped-pulse amplifica- tion,” Rev. Sci. Instrum. 75 , 5193 (2004). [31] B. Chimier, O. Ut´ eza, N. Sanner, M. Sentis, T. Itina, P. Lassonde, F. L´ egar´ e, F. Vidal, J. C. Kief- fer, “Damage and ablation thresholds of fused-silica in femtosecond regime,” Phys. Rev. B 84 , 094104 (2006).
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