Measurement and modeling of ionization in a cesium diode pumped alkali laser (DPAL)
Author:
Funder
Directed Energy Professional Society
BAE Systems, Inc.
University of New Mexico
Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s00340-024-08271-4.pdf
Reference47 articles.
1. W.F. Krupke, Diode-pumped alkali laser. Google Patents. US Patent 6,643,311 (2003)
2. R.J. Beach, W.F. Krupke, V.K. Kanz, S.A. Payne, M.A. Dubinskii, L.D. Merkle, End-pumped continuous-wave alkali vapor lasers: experiment, model, and power scaling. JOSA B 21(12), 2151–2163 (2004)
3. G.A. Pitz, D.M. Stalnaker, E.M. Guild, B.Q. Oliker, P.J. Moran, S.W. Townsend, D.A. Hostutler, Advancements in flowing diode pumped alkali lasers. In: High Energy/Average Power Lasers and Intense Beam Applications IX, vol. 9729 (2016). International Society for Optics and Photonics
4. G.D. Hager, G.P. Perram, A three-level analytic model for alkali metal vapor lasers: Part I. Narrowband optical pumping. Appl. Phys. B 101(1), 45–56 (2010)
5. B.V. Zhdanov, R.J. Knize, Review of alkali laser research and development. Opt. Eng. 52(2), 021010 (2012)
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