Title :
Improved Multispectral Antireflection and Sensing of Plasmonic Slits by Silver Mirror
Author :
Zhengqi Liu ; Guiqiang Liu ; Xiaoshan Liu ; Guo-Lan Fu ; Mu-Lin Liu
Author_Institution :
Lab. of Nanomater. & Sensors, Jiangxi Normal Univ., Nanchang, China
Abstract :
We propose and demonstrate an improved multiband antireflection from plasmonic slits array using an opaque metal mirror. The introduced mirror could enhance the optical field coupling and confinement, and therefore produce intensified plasmonic resonances in comparison with those of the open slit built by the dielectric substrate. The sharp triple-band nearunity antireflection is with a high scalability at optical frequencies via tuning the structural parameters. High-performance sensing measurements with a remarkably improved sensitivity (S ~ 1.5 λ nm/refractive index unit) and a high signal-to-noise ratio of the spectral intensity difference (AR > 57%) and with a large slope of 18.6%/nm are achieved based on this subdiffraction-limit (λ/5) structure. This proposed scheme and findings hold potential applications, including high-efficiency subtractive polychromatic filtering and ultracompact biosensing.
Keywords :
antireflection coatings; dielectric materials; mirrors; optical arrays; optical materials; optical sensors; plasmonics; refractive index; silver; surface plasmons; Ag; dielectric substrate; high-efficiency subtractive polychromatic filtering; high-performance sensing measurement; improved multiband antireflection; improved multispectral antireflection; intensified plasmonic resonances; opaque metal mirror; open slit; optical field confinement; optical field coupling; optical frequencies; plasmonic slit array; plasmonic slit sensing; refractive index unit; sensitivity; sharp triple-band nearunity antireflection; signal-to-noise ratio; silver mirror; spectral intensity difference; structural parameter tuning; subdiffraction-limit structure; ultracompact biosensing; Metals; Optical films; Optical filters; Optical reflection; Optical sensors; Plasmons; Surface plasmons; anti-reflection; multispectral; optical field coupling and confinement; sensing; silver mirror;
Journal_Title :
Photonics Technology Letters, IEEE
DOI :
10.1109/LPT.2014.2348563