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首页> 外文期刊>International Journal of Intelligent Systems and Applications >Radiation Damage Effects in Heterostructure Light Emitting Diodes (HLEDs) under Proton Irradiation Fields
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Radiation Damage Effects in Heterostructure Light Emitting Diodes (HLEDs) under Proton Irradiation Fields

机译:质子辐照场下异质结构发光二极管(HLED)的辐射损伤效应

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摘要

In the present paper, we have been analyzed the high temperature variations testing in order to be used to determine light emitting diode lifetime, even though laser diode failure mechanisms are more sensitive to increases in current density. As a measured parameter of degradation, the current density is of great significance when searching for failure modes in a laser diode. Raising the current density however, is not really indicative of lifetime since it is more likely a situation to be avoided than one that simulates normal lifetime degradation. The reliability of semiconductor sources is very dependent on the degradation modes. This paper has investigated some of the degradation modes and capabilities of typical LEDs currently used in many communication and sensing systems over wide range of the affecting parameters. LED’s are typically used in multimode transmission systems where data rates no larger than 50 Mbit/sec are required. They have larger spectral widths and can add to the problem of dispersion in communications systems. Laser diodes are used in systems that require coherent and often single mode light such as high data rate communications and sensing applications.
机译:在本文中,我们分析了高温变化测试,以便确定发光二极管的寿命,即使激光二极管的故障机制对电流密度的增加更为敏感。作为退化的测量参数,当在激光二极管中寻找故障模式时,电流密度非常重要。但是,提高电流密度并不能真正表明寿命,因为与模拟正常寿命退化的情况相比,有可能避免这种情况。半导体源的可靠性非常取决于退化模式。本文研究了影响参数范围广泛的当前在许多通信和传感系统中使用的典型LED的某些退化模式和性能。 LED通常用于要求数据速率不超过50 Mbit / sec的多模传输系统中。它们具有较大的频谱宽度,可能会增加通信系统中的色散问题。激光二极管用于需要相干且通常为单模光的系统,例如高数据速率通信和传感应用。

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