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Furthermore, a spatial mesh iteration algorithm is designed to analyze the temperature dependence of absorption cross section, emission cross section and thermal conductivity.
In Nd3+ doped silicone urea systems the highest emission cross section at 1059 nm was determined to be 60.7×10−21 cm2.
Branching ratio and emission cross section are critical parameters in laser design which in our case are found to be 67%andd 3.82 × 10−22 cm2 respectively for the transition 4G5/2 → 6H7/2.
The JO analysis predicted the asymmetry of Terbium sites, allowing the electric dipole transitions and from the JO intensity parameters, promising spectroscopic parameters – emission cross section, branching ratio, gain band width and gain coefficient of the material were calculated.
Novel techniques to control the effective emission cross section of a rare earth-doped optical fiber with a functional cladding structure are reviewed for applications in active fiber devices.
Enlargement of Yb3+ 2F7/2: Stark splitting, broadening of effective fluorescence linewidth (∆λeff) and longer fluorescent lifetime (τf) were also achieved at the same time, whereas emission cross section (σemi) of the modified glasses were kept nearly constant.
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A Judd Ofelt analysis was performed to estimate PL quantum efficiency (QE), branching ratios and induced-emission cross section (σem) of the compounds obtained.
The stimulated emission cross-section for the 1064 nm emission was determined using the emission spectra.
In this work, the Nd III) complex doped PMMA with high stimulated emission cross-section, which is one of the most important parameters for laser design, was presented.
The peak stimulated emission cross-section and gain coefficient for Ho3+-doped lead phosphate glasses have been compared with other reported Ho3+:systems.
However, the complex has a large stimulated emission cross-section about 5.031 × 10−20 cm2 which is advantageous for the design of laser.
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