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首页> 外文期刊>Applied optics >WAVELENGTH OPTIMIZATION OF QUANTUM-WELL MODULATORS IN SMART PIXELS
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WAVELENGTH OPTIMIZATION OF QUANTUM-WELL MODULATORS IN SMART PIXELS

机译:智能像素中量子阱调制器的波长优化

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摘要

We extend our recent general discussion of electroabsorption and refraction in multiple-quantum-well modulators to determine the optimum modulator design for smart-pixel applications. In addition to the optimum operating wavelength shift, from that of the zero-voltage exciton, we determine the optimum number of quantum wells, and we calculate the reflectivity change and the contrast ratio obtainable. This analysis is undertaken for both simple detectors and modulators, meaning that they are antireflection coated, as well as for devices that include Fabry-Perot resonators. The optimization is performed on a figure of merit that is inversely proportional to the incident optical read energy required on a device to switch another, downstream device. We maximize the figure of merit to minimize the optical read energy. An interesting result is that there should be no significant improvement in our smart-pixel circuit figure of merit with the use of Fabry-Perot resonant modulators and detectors. Our results are, of course, material-system specific, but for the 850-nm AlGalAs/GaAs quantum-well system the optimum wavelength shift from the exciton location is approximately 6 nm. The general trends and approach are applicable to other material systems. [References: 20]
机译:我们扩展了对多量子阱调制器中电吸收和折射的最新一般性讨论,以确定针对智能像素应用的最佳调制器设计。除了最佳工作波长偏移以外,我们还从零电压激子中确定最佳量子阱数量,并计算反射率变化和可获得的对比度。这种分析是针对简单的检测器和调制器进行的,这意味着它们都经过了抗反射涂层以及包括Fabry-Perot谐振器的设备。优化是在品质因数上执行的,该品质因数与设备上切换另一个下游设备所需的入射光读取能量成反比。我们将品质因数最大化,以最小化光学读取能量。一个有趣的结果是,使用Fabry-Perot谐振调制器和检测器不会明显改善我们的智能像素电路的品质因数。当然,我们的结果是特定于材料系统的,但是对于850 nm AlGalAs / GaAs量子阱系统,从激子位置出发的最佳波长偏移约为6 nm。总体趋势和方法适用于其他材料系统。 [参考:20]

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