Open Access Paper
10 September 2004 Path toward a high-energy solid-state laser
Author Affiliations +
Abstract
Lasers have come a long way since the first demonstration by Maiman of a ruby crystal laser in 1960. Lasers are used as scientific tools as well as for a wide variety of applications for both commercial industry and the military. Today lasers come in all types, shapes and sizes depending on their application. The solid-state laser has some distinct advantages in that it can be rugged, compact, and self contained, making it reliable over long periods of time. With the advent of diode laser pumping a ten times increase in overall laser efficiency has been realized. This significant event, and others, is changing the way solid-state lasers are applied and allows new possibilities. One of those new areas of exploration is the high energy laser. Solid-state lasers for welding are already developed and yield energies in the 0.5 to 6 kilojoule range. These lasers are at the forefront of what is possible in terms of high energy solid-state lasers. It is possible to achieve energies of greater than 100 kJ. These sorts of energies would allow applications, in addition to welding, such as directed energy weapons, extremely remote sensing, power transfer, propulsion, biological and chemical agent neutralization and unexploded and mine neutralization. This article will review these new advances in solid-state lasers and the different paths toward achieving a high energy laser. The advantages and challenges of each approach will be highlighted.
© (2004) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Gary L. Wood, Larry D. Merkle, Mark Dubinskii, and Bahram Zandi "Path toward a high-energy solid-state laser", Proc. SPIE 5414, Laser Technologies for Defense and Security, (10 September 2004); https://doi.org/10.1117/12.554439
Advertisement
Advertisement
RIGHTS & PERMISSIONS
Get copyright permission  Get copyright permission on Copyright Marketplace
KEYWORDS
Solid state lasers

Semiconductor lasers

Diodes

Ytterbium

Nd:YAG lasers

Crystals

Absorption

RELATED CONTENT

Gain media for high-average-power solid state lasers
Proceedings of SPIE (November 10 2003)
Diode-pumped Yb:Y2O3 ceramic laser
Proceedings of SPIE (September 05 2002)
Diode pumping of LaxNd1-xMgAl11O19 lasers
Proceedings of SPIE (June 16 1993)
1 J 500 Hz MOPA solid state laser pumped by...
Proceedings of SPIE (September 01 2004)

Back to Top