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Design of a resonant-cavity-enhanced photodetector for high-speed applications

机译:用于高速应用的谐振腔增强光电探测器的设计

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We present a theoretical study of the effects of light field distribution on the frequency response of a resonant-cavity-enhanced p-i-n photodetector. Taking advantage of the flexibility of cavity design, one can tailor the light field distribution in the absorption region. Because of the difference in velocities of the carriers, the speed performances of the detector depend on the field distribution and the cavity design. The results of our work indicate that when the maximum of light field intensity happens near the p/sup +/ edge of the depletion layer, the device shows the best speed performance. The frequency response, the impulse response, and the step response have been calculated for different structures to demonstrate the importance of the field distribution.
机译:我们目前对光腔分布对共振腔增强的p-i-n光电探测器的频率响应的影响进行理论研究。利用空腔设计的灵活性,可以调整吸收区域中的光场分布。由于载体速度的不同,探测器的速度性能取决于场分布和腔体设计。我们的工作结果表明,当最大的光场强度发生在耗尽层的p / sup + /边缘附近时,该器件表现出最佳的速度性能。已针对不同结构计算了频率响应,脉冲响应和阶跃响应,以证明场分布的重要性。

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