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Binary TLBO algorithm assisted for designing plasmonic nano bi-pyramids-based absorption coefficient

机译:二进制TLBO算法辅助设计基于等离子体纳米双锥体的吸收系数

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摘要

A new efficient binary optimization method based on Teaching-Learning-Based Optimization (TLBO) algorithm is proposed to design an array of plasmonic nano bi-pyramids in order to achieve maximum absorption coefficient spectrum. In binary TLBO, a group of learners consisting of a matrix with binary entries controls the presence ('1') or the absence ('0') of nanoparticles in the array. Simulation results show that absorption coefficient strongly depends on the localized position of plasmonic nanoparticles. Non-periodic structures have more appropriate response in term of absorption coefficient. This approach is useful in optical applications such as solar cells and plasmonic nano antenna.
机译:提出了一种基于教学优化的高效二元优化新方法,以设计等离激元纳米双锥阵列,以实现最大吸收系数谱。在二进制TLBO中,一组由具有二进制条目的矩阵组成的学习器控制阵列中纳米粒子的存在('1')或不存在('0')。仿真结果表明,吸收系数在很大程度上取决于等离子体纳米颗粒的局部位置。就吸收系数而言,非周期性结构具有更适当的响应。该方法在诸如太阳能电池和等离子纳米天线的光学应用中很有用。

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