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Characterization of the laser induced damage threshold of mirrors in ...

Characterization of the laser induced damage threshold of mirrors in ...

[9] A. Hertwig, S.

[9] A. Hertwig, S. Martin, J. Krüger, and W. Kautek, “Interaction area dependence of the ablation threshold of ion-doped glass,” Thin Solid Films, vol. 453-454, pp. 527–530, 2004. [10] M. Mero, J. Liu, A. Sabbah, J. Jasapara, K. Starke, D. Ristau, J. M. McIver, and W. Rudolph, “Femtosecond pulse damage and pre-damage behavior of dielectric thin films,” SPIE proc., vol. 4932, pp. 202–214, 2002. [11] A. C. Tien, S. Backus, H. Kapteyn, M. Murnane, and G. Mourou, “Short-pulse laser damage in transparent materials as a function of pulse duration,” Phys. Rev. Letters, vol. 82, no. 19, pp. 3883–3886, 1999. [12] I. Ahmad, S. A. Trushin, Z. Major, C. Wandt, S. Klingenbiel, T. J. Wang, V. Pervak, A. Popp, M. Siebold, F. Krausz, and S. Karsch, “Frontend light source for short-pulse pumped opcpa systems,” Appl. Phys. B., vol. 97, pp. 529–536, 2009. [13] A. A. Mills and R. Clift, “Reflections of the “burning mirrors of archimedes”. with a consideration of the geometry and intensity of sunlight reflected from a plane mirror,” European Journal of Physics, vol. 13, no. 6, pp. 268–279, 1992. [14] G. H. Miller, E. I. Moses, and C. R. Wuest, “The national ignition facility,” Optical Engineering, vol. 43, no. 12, pp. 2841–2853, 2004. [15] B. für Wirtschaft und Technologie, “Stromerzeugungskapazitäten und bruttostromerzeugung nach energiererträgern, deutschland,” tech. rep., Bundesministerium für Wirtschaft und Technologie, 2007. [16] R. C. Willson and A. V. Mordvinov, “Secular total solar irradiance trend during solar cycles 21-23,” Geophys. Res. Lett., vol. 30, no. 5, p. 1199, 2003. [17] J. Jasapara, A. V. V. Nampoothiri, and W. Rudolph, “Femtosecond laser pulse induced breakdown in dielectric thin films,” Phys. Rev. B, vol. 63, pp. 045117, 1–5, 2001. [18] J. Glanz, “Laser project is delayed and over budget,” tech. rep., The New York Times, 2000. [19] S. Karsch, Z. Major, J. Fülöp, I. Ahmad, T. Wang, A. Henig, S. Kruber, R. Weingartner, M. Siebold, J. Hein, C. Wandt, S. Klingenbiel, J. Osterhoff, R. Hörlein, and F. Krausz, “The petawatt field sythesizer: A new approach to ultrahigh field generation,” Advanced Solid-State Photonics, vol. 2008, pp. WF1, 1–3, 2008. 44

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