Journal of the European Optical Society - Rapid publications, Vol 2 (2007)

Quantitative analysis of the thermal distortions in a 100 W CW Nd:YAG ceramic slab laser.

A. Lapucci, M. Ciofini, E. Favilla, E. Sani, M. De Rosa, G. Mincuzzi, A. S. D. Rocco

Abstract


Making use of an interferometric diagnostic system, we analyze the thermo-mechanical distortions taking place in the slab shaped ceramic Nd:YAG active medium of a 100 W class laser. These distortions are collected in different pumping regimes, both in static situations and during transient warm-up, and compared to the results of computer simulations. This procedure enables us to determine the relevance of different stress causes and thus to increase the specific power extraction of the active slab module.

© The Authors. All rights reserved. [DOI: 10.2971/jeos.2007.07020]

Full Text: PDF

Citation Details


Cite this article

References


M. Ciofini, A. Lapucci, "Compact scalable diode-pumped Nd:YAG ceramic slab laser" Appl. Optics 47, 6174-6179 (2004).

A. Lapucci, M. Ciofini, "Efficiency optimization for a diode pumped Nd:YAG ceramic slab laser" Appl. Optics 44, 4388-4393 (2005).

M. Ciofini, E. Favilla, A. Lapucci, E. Sani, "Propagation Parameters of the beam extracted from a diode pumped Nd:YAG ceramic slab laser with a hybrid stable-unstable resonator", Journal of Optics and Laser Technology (2006),

I. Shoji, T.Taira, A.Ikesue, "Thermally-induced-birefringence effects of highly Nd3+-doped Y3Al5O12 ceramic lasers", Opt. Mater. (2006).

B. Neuenschwander, R. Weber, H. P. Weber, "Determination of the thermal lens in solid-state lasers with stable cavities", IEEE J. Quantum Elect. QE-31 6, 1082-1087 (1995).

V. S. Ermolaev, S. B. Biryuchinskii, M. V.Inochkin, A. I.Pavlishin, "Study of the thermal lens in a 150 W solid-state processing laser with semiconductor pumping" J. Opt. Technol. 70, 789-793 (2003).

H. Yoshida, M.Nakatsuka, N. Takeuchi, H.Okada, H.Fujita, "Thermal lens correction of Nd:YAG rod laser used with thermo-optical compensation element of solid material" Tech. Dig. CLEO/Europe 2005, p.73 (2005).

W. A. Clarkson, N. S. Felgate, D. C. Hanna, "Simple method for reducing the depolarization loss resulting from thermally induced birefringence in solid-state lasers" Opt. Lett. 24, 820-822 (1999).

S. Biswal, J. Nees, G. Mourou, "A simple technique to remove thermal distortions in pulsed solid-state lasers" in OSA Trends in Optics and Photonics, C. Pollock and W. Bosenberg eds., Vol.10 paper HP 9 (OSA, 1997).

D.Malacara Optical Shop testing (Wiley, New York, 1992).

I. Shoji, T. Taira, A. Ikesue, K. Yoshida, "Reduction of the thermal load in highly Nd3+-doped ceramic YAG by laser oscillation" paper MB1, in Advanced Solid-State Photonics (Tech.Digest, OSA, 2004).

H. P. Kortz, R. Ifflaender, H. Weber, "Stability and beam divergence of multimode lasers with internal variable lenses" Appl. Optics 20, 4124-4134 (1981).