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Low-loss hybrid plasmonic waveguide based on metal ridge and semiconductor nanowire

机译:基于金属脊和半导体纳米线的低损耗混合等离子体波导

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摘要

A novel hybrid plasmonic waveguide (HPW) based on a metal ridge and a semiconductor nanowire is proposed and analyzed theoretically. The high-index cylinder semiconductor nanowire is placed above a metal substrate with a semi-cylinder metal ridge and the low-index dielectric gap between them is introduced for nanoscale field confinement. Our simulations show that mode area as low as λ~2/1600 which is about three orders of the magnitude smaller than the diffraction-limit area in free space has been achieved for the proposed HPW. Compared with the early reported HPW with a high-index nanowire placed above a flat metal substrate without a semi-cylinder metal ridge, the proposed HPW has more tight lateral confinement and longer propagation distance, which also improves figure of merit (FOM). The propose HPW with truly nanoscale field confinement and low propagation loss has potential in applications such as low-threshold lasers.
机译:提出并研究了一种基于金属脊和半导体纳米线的新型混合等离子体波导(HPW)。将高折射率圆柱半导体纳米线放置在具有半圆柱金属脊的金属基板上方,并引入它们之间的低折射率介电间隙,以进行纳米级电场约束。我们的仿真表明,对于所提出的HPW,已经实现了低至λ〜2/1600的模态面积,该模态面积比自由空间中的衍射极限面积小了大约三个数量级。与早期报道的高折射率纳米线放置在没有半圆柱金属脊的平面金属基板上方的HPW相比,拟议的HPW具有更紧密的侧向限制和更长的传播距离,这也改善了品质因数(FOM)。提出的具有真正的纳米级场限制和低传播损耗的HPW在诸如低阈值激光器等应用中具有潜力。

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