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首页> 外文期刊>Solid-State Electronics >Analysis of mode-hopping effect in Fabry-Perot multiple-quantum well laser diodes via low frequency noise investigation
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Analysis of mode-hopping effect in Fabry-Perot multiple-quantum well laser diodes via low frequency noise investigation

机译:通过低频噪声研究分析法布里-珀罗多量子阱激光二极管的模式跳跃效应

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摘要

Comprehensive investigation of noise characteristics and radiation spectrum with special attention to the mode-hopping effect of Fabry-Perot (FP) multiple quantum well laser diodes (LDs) have been carried out: laser radiation spectra, optical and electrical fluctuations and cross-correlation factor betweenthem have been measured under stable and mode-hopping operation. At the mode-hopping that occurs at particular operation conditions (injection current and temperature) LD radiation spectrum is unstable in time, very intensive and highly correlated Lorentzian-type optical and electrical fluctuations are observed. Characteristic time of physical processes that take part in LD structure during mode-hopping is ranged from microseconds to milliseconds. These processes are caused by the carrier generation and recombination in the centers formed by the defects in barrier layer (in the active region).
机译:已对噪声特性和辐射谱进行了全面研究,并特别关注了Fabry-Perot(FP)多量子阱激光二极管(LD)的模式跳跃效应:激光辐射谱,光学和电子波动以及互相关因子它们之间是在稳定和模式跳跃操作下测量的。在特定操作条件(注入电流和温度)下发生的模式跳跃,LD辐射光谱在时间上不稳定,观察到非常强烈且高度相关的洛伦兹型光学和电气波动。跳模过程中参与LD结构的物理过程的特征时间范围从微秒到毫秒。这些过程是由在势垒层(在有源区域中)的缺陷形成的中心处的载流子产生和复合引起的。

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