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首页> 外文期刊>Electron Devices, IEEE Transactions on >Model of Steady-State Injection Processes in a High-Power Laser-Thyristor Based on Heterostructure With Internal Optical Feedback
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Model of Steady-State Injection Processes in a High-Power Laser-Thyristor Based on Heterostructure With Internal Optical Feedback

机译:基于内部光反馈异质结构的大功率激光晶闸管稳态注入过程模型

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摘要

Analytical model of a low-voltage laser-thyristor based on a semiconductor heterostructure has been developed. The model describes static current–voltage (–) characteristics and accounts for the nature of the voltage blocking and negative differential resistance in multijunction heterostructures with optical feedback. It is shown that a region of the – characteristic saturation appears in a laser thyristor in the ON-state with increasing current through the device. It is shown that optimizing the base region parameters and emission characteristics of the active region of the diode part makes it possible to preserve high efficiency of injection processes in the laser thyristor up to current densities exceeding tens of kA/. It is demonstrated that switching from the blocking to the conducting state by control currents with densities of several A/ is possible.
机译:建立了基于半导体异质结构的低压激光晶闸管的分析模型。该模型描述了静态电流-电压(-)特性,并说明了具有光反馈的多结异质结构中电压阻挡和负微分电阻的性质。结果表明,随着流经器件的电流的增加,处于导通状态的激光晶闸管中会出现–特性饱和的区域。结果表明,通过优化二极管部件有源区的基极区参数和发射特性,可以在电流密度超过数十kA /的情况下,保持激光晶闸管中注入工艺的高效率。已经证明,通过密度为几A /的控制电流可以从阻塞状态切换到导通状态。

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