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20022009
most citedTrigonometric Parallaxes of Massive Star Forming Regions: VI. Galactic Structure, Fundamental Parameters and Non-Circular Motions

1.1k citations

Showing 2009 · physics.opticsShow all

7 papers · 2 filters

physics.optics200914 cited

Splitting of transmission peak due to the hole symmetry breaking

Xiao-gang Yin, Cheng-ping Huang, Zhi-Qiang Shen +2

We studied experimentally and theoretically the optical transmission through asymmetrical holes of a metal film, which is constructed by introducing small protuberances to the side…

physics.optics200915 cited

Transmission resonance in a composite plasmonic structure

Xiao-gang Yin, Cheng-ping Huang, Qian-jin Wang +2

The design, fabrication, and optical properties of a composite plasmonic structure, a two-dimentional array of split-ring resonators inserted into periodic square holes of a metal…

physics.optics20097 cited

Light reflection from a metal surface with subwavelength cavities

Cheng-ping Huang, Jia-qi Li, Qian-jin Wang +2

The interaction of light with the localized/delocalized system, i.e., a metal surface with rectangular cavities of finite depth, has been studied. Reflection spectrum has been meas…

physics.optics200973 cited

Study of plasmon resonance in a gold nanorod with an LC circuit model

Cheng-ping Huang, Xiao-gang Yin, Huang Huang +1

Gold nanorod has generated great research interest due to its tunable longitudinal plasmon resonance. However, little progress has been made in the understanding of the effect. A m…

physics.optics200956 cited

Charge oscillation-induced light transmission through subwavelength slits and holes

X. R. Huang, R. W. Peng, Z. Wang +2

We present a concrete picture of spoof surface plasmons (SSPs) combined with cavity resonance to clarify the basic mechanism underlying extraordinary light transmission through met…

physics.optics200959 cited

Extraordinary Optical Transmission Induced by Excitation of a Magnetic Plasmon Propagation Mode in a Diatomic Chain of Slit-hole Resonators

H. Liu, T. Li, Q. J. Wang +6

In this paper, we will propose that magnetic-resonance nanostructures in a metal surface could be used to realize extraordinary optical transmission (EOT). Toward this goal, we des…