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Highly transparent Ce:Nd:YAG ceramic with good light conversion capacity for solar-pumped solid-state lasers. | LitMetric

AI Article Synopsis

  • Researchers developed a new type of ceramic laser gain medium, Ce,Nd:YAG, that outperforms existing materials in converting light for solar-powered lasers.
  • The new material demonstrated 3.98 times higher visible light absorption and 1.34 times enhanced light conversion efficiency compared to Cr,Nd:YAG ceramics.
  • The study concluded that optimizing the concentrations of Ce and Nd ions boosts energy transfer efficiency, reaching 64.31% at elevated temperatures, which can improve solid-state laser performance.

Article Abstract

Developing a high quality ceramic laser gain medium for solar directly pumped solid state lasers is essential, and yet the light conversion efficiency of the gain media for solar pumping remains a challenge. In this study, Ce and Nd ions, co-doped YAG transparent ceramics with theoretical transmittance and stable Ce valent state were developed, and revealed that the absorbed visible light and light conversion efficiency in Ce,Nd:YAG ceramics were 3.98 times and 1.34 times higher than those in widely reported Cr,Nd:YAG ceramics, respectively. A concentration matching principle between Ce and Nd ions in YAG was established, and a higher Nd ion doping concentration with a relatively low Ce concentration was favorable to improve both the light conversion efficiency and emission intensity at 1064 nm of Ce,Nd:YAG ceramics. Energy transfer efficiency from Ce to Nd of the 0.3 at.%Ce,1.5at.%Nd:YAG ceramic reached as high as 61.71% at room temperature. Surprisingly, it was further promoted to 64.31% at a higher temperature of 473 K. More excited electrons at the upper energy level of Ce ion under the high temperature accounted for this novel phenomenon. This study proposes a new design strategy of gain materials for solar directly pumped solid state lasers.

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Source
http://dx.doi.org/10.1364/OE.518804DOI Listing

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