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砷化镓、磷化铟和砷化铟纳米线阵列中的波长选择性吸收率。

Wavelength-selective absorptance in GaAs, InP and InAs nanowire arrays.

作者信息

Azizur-Rahman K M, LaPierre R R

机构信息

Department of Engineering Physics, McMaster University, Hamilton, Ontario L8S4L7, Canada.

出版信息

Nanotechnology. 2015 Jul 24;26(29):295202. doi: 10.1088/0957-4484/26/29/295202. Epub 2015 Jul 2.

Abstract

The absorptance in vertical nanowire (nw) arrays is a result of three optical phenomena: radial mode resonances, near-field evanescent wave coupling, and Fabry-Perot (F-P) modes. The contribution of these optical phenomena to GaAs, InP and InAs nw absorptance was simulated using the finite element method. The study compared the absorptance between finite and semi-infinite nw lengths with varying geometrical parameters, including the nw diameter, length and array period. Simulation results showed that the resonance peak wavelength of the HE11 and HE12 radial modes linearly red-shifted with increasing nw diameter. The absorptance and spectral width of the resonance peaks increased as the nw length increased, with an absorptance plateau for very long nws that depended on diameter and period. Near-field coupling between neighboring nws was observed to increase with decreasing period. The effect of F-P modes was more pronounced for shorter nws, with a significant enhancement of HE12 over HE11 absorptance. Engineering of nw arrays to take advantage of these optical phenomena for multi-spectral photodetector applications is discussed.

摘要

垂直纳米线(nw)阵列的吸收率是三种光学现象的结果:径向模式共振、近场倏逝波耦合和法布里-珀罗(F-P)模式。使用有限元方法模拟了这些光学现象对GaAs、InP和InAs纳米线吸收率的贡献。该研究比较了具有不同几何参数(包括纳米线直径、长度和阵列周期)的有限长度和半无限长度纳米线之间的吸收率。模拟结果表明,HE11和HE12径向模式的共振峰波长随纳米线直径的增加而线性红移。共振峰的吸收率和光谱宽度随着纳米线长度的增加而增加,对于非常长的纳米线存在一个取决于直径和周期的吸收率平台。观察到相邻纳米线之间的近场耦合随着周期的减小而增加。F-P模式的影响在较短的纳米线中更为明显,HE12的吸收率相对于HE11有显著增强。讨论了利用这些光学现象设计纳米线阵列以用于多光谱光电探测器应用的问题。

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