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Optimized Tamm-plasmon structure by Differential Evolution algorithm for single and dual peaks hot-electron photodetection

机译:单双峰热电炼制差分演化算法优化的Tamm-等离子结构

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Wavelength-selective photodetectors with dual and multiple narrowband spectral responses in the infrared range are essential in the development of hyperspectral imaging technology and have attracted great attention due to their potential applications in a variety of areas such as resource remote sensing and mineral exploration. Here, we introduce an efficient optimization of Tamm-plasmon (TP) structure-based hot electron photodetection devices in the telecommunications wavelengths. The devices consist of a Si/SiO2 distributed Bragg reflector (DBR) multilayer structure atop of an Au/n-Si Schottky diode. The DBR structure is optimized using Differential Evolution (DE) algorithm for wavelength-selectivity and ultra-narrow linewidths at arbitrarily wavelengths. DE shows excellent capability and efficiency in solving a high dimensional continuous optimization problem with competitive speed. The optimized TP structure by DE exhibits near-unity absorptance at the designed wavelengths and requires a relatively short computation time on a standard computer of approximately one and three days to search the optimized TP structures for single and dual absorption peak photodetection, respectively. This result shows that DE is efficient for multilayer structure optimization. Finally, a mechanism for selective photodetection of the two sensitive wavelengths is proposed by tuning the height of the Au/n-Si Schottky barrier with a bias voltage. This wavelength selection mechanism opens the way for dual absorption peaks photodetection.
机译:具有双重和多个窄带光谱响应的波长选择性光电探测在高光谱成像技术的开发中是必不可少的,并且由于它们在资源遥感和矿物勘探等各种领域的潜在应用而引起了极大的关注。这里,我们在电信波长中介绍了基于Tamm-等载(TP)的热电子光电检修装置的有效优化。该装置包括Au / N-Si肖特基二极管的Si / SiO2分布式布拉格反射器(DBR)多层结构。 DBR结构使用用于波长选择性的差分演进(DE)算法和任意波长的超窄线宽进行了优化。 DE以竞争速度求解高维连续优化问题的优异能力和效率。 DE的优化TP结构在设计的波长上展示了近乎统一的吸收率,并且在大约一度和三天的标准计算机上需要相对短的计算时间,以便分别搜索单个和双吸收峰值光电检测的优化TP结构。该结果表明,DE为多层结构优化有效。最后,对于两个敏感波长的选择性的光检测的机构通过调谐的Au /正Si肖特基势垒的高度与偏置电压提出。该波长选择机构打开了双重吸收峰值光电检测的方式。

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