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The maximum emission cross-section (ECS) for 4I13/2→4I15/2 transition of Er3+ was calculated to be 1.02×10−20 cm2 for TeO2 Li2O ZnO Ln2O3 glasses.
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This cross section is close to half of the maximum emission cross section 3.95 × 10−21cm2 in conventional silica where the FWHM is 35 nm usually.
In order to evaluate the maximum transmission DR affected by the LED emission cross-section, the use of monochromatic light is assumed in this article.
However, the RMS delay spread increases and subsequently the maximum data rate decreases for the quasi-elliptic emission cross-section LEDs.
The increased number of transmitters decreases the maximum values of RMSDS and increases the minimum values of RMSDS regardless of the emission cross-section shape.
The maximum DR at a certain point will be largest for the one transmitter with circular emission cross-section.
Stimulated emission cross-section.
"Quasi-elliptic emission cross-section LED model" section describes the non-circular quasi-elliptic emission cross-section LED model.
The stimulated emission cross-section for the 1064 nm emission was determined using the emission spectra.
These results are compared to LED arrays with a circular emission cross-section.
The simulation results show that the emission cross-section affects the illumination and communication performance.
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