Shermakhamat D. Payziyev, Fayoziddin Kamoliddinov, A. Sherniyozov, Khikmat Makhmudov
2026.1.1Journal of Photonics for Energy
Abstract
We compare the capabilities of external and internal sensitizers in solar laser systems through numerical simulations. Three lasing media were studied: Nd:YAG, Nd:YAG with alexandrite as an external sensitizer, and Cr:Nd:YAG with Cr3+ ions as internal sensitizers. The Nd:YAG + alexandrite system showed a 1.38-fold efficiency gain over Nd:YAG without sensitizer, while Cr:Nd:YAG achieved a 1.34-fold improvement due to both radiative and nonradiative transfer mechanisms. Thermal analysis revealed that Cr:Nd:YAG becomes inoperative at input powers above 2.3 kW, whereas Nd:YAG and Nd:YAG + alexandrite remained stable up to 2.9 kW. It was shown that configurations based on external sensitization, in particular the Nd:YAG + alexandrite system, can provide both increased efficiency and excellent thermal stability, which offers clear advantages for high-power and long-term operation of solar lasers.
Citation format
PAYZIYEV, Shermakhamat D., et al. Comparative analysis of solar pumped nd:yag lasers with internal and external sensitizers. Journal of Photonics for Energy, 2026, 16(01): 014501–014501.