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Striped GaAs lasers: Mode size and efficiency

机译:条纹GaAs激光器:模式尺寸和效率

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The stimulated efficiency of the fundamental mode and its beamwidth along the junction plane are calculated for GaAs double‐heterostructure (DH) stripe‐geometry lasers in a self‐consistent analytical model. Carrier diffusion along the junction plane creates a gain profile which acts as the guiding mechanism for the propagating mode. The size of the mode and the diffusion‐governed gain profile are the two interdependent parameters that enter into the characteristic equation whose solution determines the lasing threshold. The analytical results obtained indicate that the beamwidth is almost linearly related to the carrier diffusion length and stripe width. The minimum beamwidth obtainable for zero stripe width is ?1.3 times a diffusion length. The calculated waveguide loss, due to absorption in the unpumped region, increases with reduced stripe width. This mode loss is 5–7 cm-1 for 10–12‐μm‐wide stripes, in agreement with experiment. Due to the increased waveguide loss the predicted external efficiency decreases and the lasing threshold current density increases with decrease in stripe width. The increase in threshold is due not only to carrier loss by diffusion but also to the increase in absorption loss at reduced stripe width.
机译:在自洽分析模型中,对GaAs双异质结构(DH)条形几何激光器计算了基模的激发效率及其沿结平面的束宽。沿接合面的载流子扩散产生增益分布,该增益分布充当传播模式的引导机制。模式的大小和扩散控制的增益曲线是输入到特征方程中的两个相互依赖的参数,其解决定了激射阈值。获得的分析结果表明,束宽几乎与载流子扩散长度和条带宽度成线性关系。对于零条纹宽度可获得的最小光束宽度是扩散长度的〜1.3倍。由于未泵浦区域中的吸收,计算出的波导损耗会随着条纹宽度的减小而增加。与实验一致,对于10–12–μm宽的条纹,此模式损耗为5–7 cm-1。由于波导损耗的增加,预计的外部效率会降低,而激射阈值电流密度会随着条带宽度的减小而增加。阈值的增加不仅是由于扩散导致的载流子损失,还归因于条带宽度减小时吸收损失的增加。

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    《Journal of Applied Physics 》 |1975年第6期| P.2723-2730| 共8页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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