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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Utilization of binary PSO algorithm and DDA method to investigate the plasmonic demultiplexer -based CPA filter
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Utilization of binary PSO algorithm and DDA method to investigate the plasmonic demultiplexer -based CPA filter

机译:二进制PSO算法和DDA方法的利用研究了基于等离子体多路分解器的CPA滤波器

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摘要

Here, we suggest the possibility of optical circuit design approach by employing the binary optimization of plasmonic nano disks. The proposed mechanism is based on combination of binary particle swarm optimization (BPSO) algorithm and discrete dipole approximation (DDA) method. BPSO, a group of birds including a matrix with binary entries responsible for controlling nano disks in the array, shows the presence with symbol of ('1') and the absence with ('0'). The current research represents a nanoscale and compact 4 channels plasmonic Demultiplexer as optical circuit. It includes 8 coherent perfect absorption (CPA)-type filters. The operation principle is based on the absorbable formation of a conductive path in the dielectric layer of a plasmonic nano-disks waveguide. Since the CPA efficiency depends strongly on the number of plasmonic nano-disks and the nano disks location, an efficient binary optimization method based the BPSO algorithm is used to design an optimized array of the plasmonic nano-rod in order to achieve the maximum absorption coefficient in the 'off state. (C) 2017 Elsevier GmbH. All rights reserved.
机译:在这里,我们建议通过采用等离子体纳米盘的二元优化来建议光学电路设计方法的可能性。该提出的机制基于二元粒子群优化(BPSO)算法的组合和离散偶极逼近(DDA)方法。 BPSO,一组鸟类,包括具有负责控制阵列中的纳米磁盘的二进制条目的矩阵,显示了('1')的符号和('0')的存在。目前的研究代表了一种纳米级和紧凑的4通道等离子体多路分解器作为光学电路。它包括8个相干的完美吸收(CPA)型过滤器。操作原理基于等离子体纳米盘波导的介电层中的导电路径的可吸收形成。由于CPA效率强烈取决于等离子体纳米盘的数量和纳米盘位置,因此基于BPSO算法的有效二进制优化方法用于设计最大的等离子体纳米杆的阵列,以实现最大吸收系数在'关闭状态。 (c)2017年Elsevier GmbH。版权所有。

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