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Optimized characteristics of a designed oxide confined 420nm MQW blue-violet laser by varying differential gain

机译:通过改变差分增益优化设计的氧化物限制的420nm MQW蓝紫色激光器的特性

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In this work, the performance characteristics of a designed oxide confined 420nm InGaN based multiple quantum well (MQW) blue-violet laser have been optimized and presented by varying differential gain. The material gain of In0.1227Ga0.8773N/Al0.08Ga0.92N MQW edge emitting laser (EEL) has been theoretically obtained. The peak material gain obtained from the analysis has been used to study the performance of the designed oxide confined laser. The lower value of the threshold current has been obtained as 3.4mA for the designed oxide confined laser. The steady state output power is 71.68mW and the modulation bandwidth is 14GHz at a differential gain of 1??10??16 cm2. By increasing the differential gain up to 5??10??16 cm2 a maximum value of output power is obtained as 73.37mW and a maximum modulation bandwidth is obtained as 28GHz. Thus, a better performance of the designed oxide confined laser has been observed by varying the differential gain.
机译:在这项工作中,通过改变差分增益,优化并展示了设计的氧化物限制的420nm InGaN基多量子阱(MQW)蓝紫色激光器的性能。理论上已经获得了In0.1227Ga0.8773N / Al0.08Ga0.92N MQW边缘发射激光器(EEL)的材料增益。通过分析获得的峰值材料增益已用于研究设计的氧化物约束激光器的性能。对于设计的氧化物约束激光器,阈值电流的下限值为3.4mA。稳态输出功率为71.68mW,调制带宽为14GHz,差分增益为1×10×16 cm2。通过将差分增益增加到5×10×10-16 cm2,可获得的输出功率最大值为73.37mW,获得的最大调制带宽为28GHz。因此,通过改变差分增益已经观察到设计的氧化物限制激光器的更好的性能。

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