首页> 外文期刊>Applied optics >PERFORMANCE COMPARISON BETWEEN MULTIPLE-QUANTUM-WELL MODULATOR-BASED AND VERTICAL-CAVITY-SURFACE-EMITTING LASER-BASED SMART PIXELS
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PERFORMANCE COMPARISON BETWEEN MULTIPLE-QUANTUM-WELL MODULATOR-BASED AND VERTICAL-CAVITY-SURFACE-EMITTING LASER-BASED SMART PIXELS

机译:基于多量子阱调制器的垂直腔腔喷射激光智能像素的性能比较

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摘要

We compared multiple-quantum-well modulator-based smart pixels and vertical-cavity-surface-emitting laser (VCSEL) based smart pixels in terms of optical switching power, switching speed, and electric-power consumption. Optoelectronic circuits integrating GaAs field-effect transistors are designed for smart pixels of both types under the condition that each pixel has an optical threshold and gain. It is shown that both types perform maximum throughput of similar to 3 Tbps/cm(2). In regard to design flexibility, the modulator type is advantageous because switching time can be reduced by supplying large electric power, whereas switching time and electric-power consumption are limited to larger than certain values in the VCSEL type. In contrast, in regard to optical implementation, the VCSEL type is advantageous because it does not need an external bias-light source, whereas the modulator type needs bias-light arrays that must be precisely located because the small modulator diameter, <10 mu m, is essential to high-speed operation. Abias-light source that increases the total power consumption of the system may offset the advantages of the modulator type. (C) 1996 Optical Society of America [References: 12]
机译:我们比较了基于多量子阱调制器的智能像素和基于垂直腔表面发射激光器(VCSEL)的智能像素的光开关功率,开关速度和功耗。集成GaAs场效应晶体管的光电电路是为两种类型的智能像素设计的,条件是每个像素都有一个光学阈值和增益。结果表明,两种类型的最大吞吐量都接近3 Tbps / cm(2)。关于设计灵活性,调制器类型是有利的,因为可以通过提供大功率来减少切换时间,而将切换时间和功耗限制为大于VCSEL类型的某些值。相比之下,就光学实现而言,VCSEL类型是有利的,因为它不需要外部偏置光源,而调制器类型则需要必须精确定位的偏置光阵列,因为小的调制器直径小于10微米,对于高速操作至关重要。增加系统总功耗的偏置光源可能会抵消调制器类型的优势。 (C)1996年美国眼镜学会[参考文献:12]

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