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沿纳米级条纹波导的束缚等离激元激发:端耦合与光栅耦合技术的比较

Excitation of bound plasmons along nanoscale stripe waveguides: a comparison of end and grating coupling techniques.

作者信息

Perera C S, Vernon K C, Funston A M, Cheng H, Eftekhari F, Davis T J

出版信息

Opt Express. 2015 Apr 20;23(8):10188-97. doi: 10.1364/OE.23.010188.

Abstract

In this paper we excite bound long range stripe plasmon modes with a highly focused laser beam. We demonstrate highly confined plasmons propagating along a 50 µm long silver stripe 750 nm wide and 30 nm thick. Two excitation techniques were studied: focusing the laser spot onto the waveguide end and focusing the laser spot onto a silver grating. By comparing the intensity of the out-coupling photons at the end of the stripe for both grating and end excitation we are able to show that gratings provide an increase of a factor of two in the output intensity and thus out-coupling of plasmons excited by this technique are easier to detect. Authors expect that the outcome of this paper will prove beneficial for the development of passive nano-optical devices based on stripe waveguides, by providing insight into the different excitation techniques available and the advantages of each technique.

摘要

在本文中,我们用高聚焦激光束激发束缚长程条纹等离子体激元模式。我们展示了沿着一条长50微米、宽750纳米、厚30纳米的银条纹传播的高度受限的等离子体激元。研究了两种激发技术:将激光光斑聚焦到波导端部以及将激光光斑聚焦到银光栅上。通过比较条纹末端对于光栅激发和端部激发的外耦合光子强度,我们能够表明光栅使输出强度提高了两倍,因此通过这种技术激发的等离子体激元的外耦合更容易被检测到。作者预计,本文的结果将通过深入了解可用的不同激发技术以及每种技术的优势,证明对基于条纹波导的无源纳米光学器件的开发有益。

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