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REFERENCES 15References[1] W. Koechner, Solid-State Laser Engineering, vol. 1 of Springer series in optical sciences ; 1, Springer, Berlin,5th ed., 1999. 3, 8, 6.1, 12, 3, 6.2, 14[2] R. C. Powell, Physics of Solid-State Laser Materials, Atomic, Molecular, and Optical Physics, Springer-Verlag, NewYork, USA, 1998. 1, 2, 3.1, 4, 4, 2, 11[3] M. Vittorio, “Resonators for solid-state lasers with large-volume fundamental mode and high alignment stability,”Applied Optics 25, pp. 107–117, January 1986. 5[4] H. Kogelnik, “Imaging of optical modes - resonators with internal lenses,” Bell System Technologies 44, pp. 455–494, March 1965. 5[5] O. Svelto, Principles of lasers, Plenum Press, New York, 3rd ed., 1989. 2, 2[6] G. Eßer, A. Otto, and M. Geiger, “Requirements towards future laser systems for flexible manufacturing,” in LaserAssisted Net Shape Engineering 4, M. Geiger and A. Otto, eds., LANE 2004 1, pp. 37–45, Bavarian Laser Center,Meisenbach-Verlag Bamberg, (Bamberg, Germany), 2004. 0[7] D. L. Dexter, “A theory of sensitized luminescence in solids,” The Journal of Chemical Physics 21, pp. 836–850,May 1953. 4, 4, 4, 2[8] W. Demtröder, Laser Spectroscopy - Basic Concepts and Instrumentation, "Advanced Texts in Physics", Springer,Berlin, 3 ed., 2003. 2[9] R. Weber, B. Neuenschwander, and H. P. Weber, “Thermal effects in solid-state materials,” Optical materials 11,pp. 245–254, January 1999. 5, 5[10] M. P. MacDonald, J. E. Graf, J. E. Balmer, and H. P. Weber, “Reducing thermal lensing in diode-pumped laser rods,”Optics Communications 178, pp. 383–393, May 2000. 5, 5, 5[11] D. W. Hughes and J. R. M. Barr, “Laser diode pumped solid state lasers,” Journal of Physics D: Applied Physics 25,pp. 563–586, April 1992. 8[12] A. K. Cousins, “Temperature and thermal stress scaling in finite-length end-pumped laser rods,” Journal of QuantumElectronics 28, pp. 1057–1069, April 1992. 5[13] R. Weber, B. Neuenschwander, M. MacDonald, M. B. Roos, and H. P. Weber, “Cooling schemes for longitudinallydiode laser-pumped Nd:YAG rods,” IEEE Journal of Quantum Electronics 34, pp. 1046–1053, June 1998. 5[14] W. Koechner, “Absorbed Pump Power, Thermal Profile and Stresses in a cw Pumped Nd:YAG crystal,” AppliedOptics 9, pp. 1429–1434, June 1970. 5[15] M. Tsunekane, N. Taguchi, and H. Inaba, “Efficient 946-nm laser operation of a composite Nd:YAG rod with undopedends,” Applied Optics 37, pp. 5713–5719, August 1998. 5[16] D. Nikogosyan, Properties of optical and laser-related materials; A HANDBOOK, John Wiley & Sons, West Sussex,England; Cork, Ireland, 1998. 11, 3[17] Z. J. Kiss and R. C. Duncan, “Cross-Pumped Cr 3+ -Nd 3+ :YAG laser system,” Applied Physics Letters 5, pp. 200–202,November 1964. 3, 13[18] D. Pruss, G. Huber, and A. Beimowski, “Efficient Cr 3+ Sensitized Nd 3+ :GdScGa-Garnet Laser at 1.06µm,” AppliedPhysics B 28, pp. 355–358, April 1982. 3, 13

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