Efficient TEM00-mode solar laser using four Nd:YAG rods/four off-axis parabolic mirrors pumping approach

  • Boutaka R
  • Liang D
  • Kellou A
3Citations
Citations of this article
7Readers
Mendeley users who have this article in their library.

Abstract

A four-rod/four-TEM 00-mode beam off-axis parabolic mirror solar pumping concept is proposed. Four off-axis parabolic mirrors with 10 m 2 total collection area were used as the primary solar concentrators to pump four 3.1-mm diameter, 84-mm length neodymium-doped yttrium aluminum garnet (Nd:YAG) rods within four 2V-shaped pump cavities through four secondary fused-silica aspheric concentrators and four rectangular fused-silica light guides, ensuring a good absorbed pump power distribution within each rod and avoiding the serious thermal lensing and thermal stress issues associated with classical single large rod solar lasers. The laser design parameters were optimized using ZEMAX © and LASer Cavity Analysis and Design (LASCAD ©) analysis software to maximize the TEM 00-mode laser power. 155.29-W TEM 00-mode total laser power was numerically calculated, corresponding to 15.5 W∕m 2 solar laser collection efficiency and 1.72% solar-to-TEM 00-mode laser conversion efficiency, respectively. This result represents an improvement of nearly 2 and 1.24 times, in solar laser collection efficiency and solar-to-TEM 00-mode laser conversion efficiency, respectively, as compared with the previous experimental records of the TEM 00-mode solar laser pumped through the parabolic mirror primary concentrator. It provides also a 1.14 and 1.19 times improvement, as compared to the previous numerical record of the TEM 00-mode solar laser pumped by the Fresnel lens primary solar concentrator.

Cite

CITATION STYLE

APA

Boutaka, R., Liang, D., & Kellou, A. (2022). Efficient TEM00-mode solar laser using four Nd:YAG rods/four off-axis parabolic mirrors pumping approach. Journal of Photonics for Energy, 12(03). https://doi.org/10.1117/1.jpe.12.038002

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free