We demonstrate high resonant absorption of visible light with a plasmonic nanocavity chain structure fabricated through resistless nanoimprinting in metal (RNIM). The RNIM approach provides a simple, reproducible, and accurate means to fabricate metallic nanopatterns with high fidelity. The nanocavities are shown to be efficiently excited using normally incident light, and the resonant wavelength can be controlled by either the width or the depth of the cavity. Numerical simulations confirm the experimental observations, and illustrate the behavior of the nanocavity chain waveguide and insensitivity to incident angle. The resonant absorption is due to the excitation of a localized metal-insulator-metal cavity mode. The interacting surface w...
Plasmons are collective oscillations of free electrons in a metal. At optical frequencies plasmons e...
We report one- and two-dimensional arbitrary patterns which are achieved by nanocavity waveguides ma...
We investigate the properties of gold surfaces patterned using a nanoscale "lost wax" technique by e...
This article demonstrates high resonant absorption of visible light with a plasmonic nanocavity chai...
We study the physics of a new type of subwavelength nanocavities. They are based on U-shaped metal-i...
University of Minnesota Ph.D. dissertation. October 2016. Major: Electrical/Computer Engineering. Ad...
Metal–insulator–metal (MIM) nanogaps in the canonical nanoparticle-on-mirror geometry (NPoM) provide...
Funder: Trinity College, University of CambridgeMetal-insulator-metal (MIM) nanogaps in the canonica...
Photonic microcavity coupling of a subwavelength hole-disk array, a two-element metal/dielectric com...
Integrated photonic circuits require small photonic elements. Recent progress in nanowire synthesis ...
Metal nanostructures have received considerable attention for their ability to guide and manipulate ...
We propose a mechanism of ultrahigh-Q metallic nanocavity resonances that involves an efficient loss...
Plasmonic nanolasers have ultrahigh lasing thresholds, especially those devices for which all three ...
Metal nanostructures have received considerable attention for their ability to guide and manipulate ...
As plasmonic antennas for surface-plasmon-assisted control of optical fields at specific frequencies...
Plasmons are collective oscillations of free electrons in a metal. At optical frequencies plasmons e...
We report one- and two-dimensional arbitrary patterns which are achieved by nanocavity waveguides ma...
We investigate the properties of gold surfaces patterned using a nanoscale "lost wax" technique by e...
This article demonstrates high resonant absorption of visible light with a plasmonic nanocavity chai...
We study the physics of a new type of subwavelength nanocavities. They are based on U-shaped metal-i...
University of Minnesota Ph.D. dissertation. October 2016. Major: Electrical/Computer Engineering. Ad...
Metal–insulator–metal (MIM) nanogaps in the canonical nanoparticle-on-mirror geometry (NPoM) provide...
Funder: Trinity College, University of CambridgeMetal-insulator-metal (MIM) nanogaps in the canonica...
Photonic microcavity coupling of a subwavelength hole-disk array, a two-element metal/dielectric com...
Integrated photonic circuits require small photonic elements. Recent progress in nanowire synthesis ...
Metal nanostructures have received considerable attention for their ability to guide and manipulate ...
We propose a mechanism of ultrahigh-Q metallic nanocavity resonances that involves an efficient loss...
Plasmonic nanolasers have ultrahigh lasing thresholds, especially those devices for which all three ...
Metal nanostructures have received considerable attention for their ability to guide and manipulate ...
As plasmonic antennas for surface-plasmon-assisted control of optical fields at specific frequencies...
Plasmons are collective oscillations of free electrons in a metal. At optical frequencies plasmons e...
We report one- and two-dimensional arbitrary patterns which are achieved by nanocavity waveguides ma...
We investigate the properties of gold surfaces patterned using a nanoscale "lost wax" technique by e...