Title :
Transmission characteristics of a subwavelength metallic slit with perpendicular groove
Author :
Jin, Li ; Zhou, Jun ; Zou, Weibo ; Zhang, Haopeng ; Zhang, Lingfen
Author_Institution :
Inst. of Photonics, Ningbo Univ., Ningbo, China
Abstract :
The transmission property of a subwavelength metallic slit with perpendicular groove is investigated by using finite element method. The lengths for the slits at both sides of the groove are set as the length of a metallic slit without groove at the surface plasmon fundamental mode resonance. In the grooved subwavelength metallic slit, enhanced transmission is found to be attributed to two kinds of resonance including surface plasmon waveguide resonance along the propagating direction and the transversely constructive interferential resonance. For the former resonance, integer antinodes of surface plasmon are formed in the groove. For the later resonance, there is a tradeoff between the maximum amplitude and the full width at half maximum of the transmitted peaks with the change of the groove width. And, the transmission enhancement of the grooved subwavelength metallic slit is related to the number of groove and the incident wavelength. Furthermore, the above resonances also exist in the structure whose lengths of metallic slits are set as the length of a slit without groove at the surface plasmon high-order mode resonance. By optimizing the geometric parameters, the transmission enhancement of the grooved subwavelength metallic slit as high as about 15367% is achieved.
Keywords :
finite element analysis; light propagation; light transmission; optical waveguides; plasmonics; surface plasmon resonance; finite element method; geometric parameters; groove width; integer antinodes; maximum amplitude; perpendicular groove; subwavelength metallic slit; surface plasmon fundamental mode resonance; surface plasmon high-order mode resonance; surface plasmon waveguide resonance; transmission characteristics; transmission enhancement; transversely constructive interferential resonance; Abstracts; Transmission; subwavelength metallic slit; surface plasmon; waveguide resonance;
Conference_Titel :
Communications and Photonics Conference and Exhibition, 2011. ACP. Asia
Conference_Location :
Shanghai
Print_ISBN :
978-0-8194-8961-6