In this letter, we propose a resonant approach to achieve enhanced power transmission through electrically small apertures in the near-infrared. The enhancement is obtained by exciting a magnetic resonance in a pair of plasmonic pillars, placed on a screen with a drilled subwavelength hole. The localized resonance allows us to enhance the equivalent magnetic dipole moment of the aperture, hence increasing the transmitted power. The proposed setup may find interesting applications in high-capacity memories, ultradiffractive imaging systems, high-resolution spatial filters, and high-precision lithography
The optics and photonics development is currently driven towards nanometer scales. However, diffrac...
Surface plasmons have been accessed with mid-IR light on Ni microarrays of subwavelength apertures u...
The interaction of magnetic resonators connected by nano-antennas is studied for the first time. Com...
In this letter, we propose a resonant approach to achieve enhanced power transmission through electr...
In this letter, we propose the employment of nano-rings made of silver spheres, to enhance the trans...
"In this Chapter, the role of complex artificial structures in enhancing the power transmission thro...
ABSTRACT: We experimentally demonstrate a simple approach for surface current engineering in a cross...
By providing a connection between the freely propagating radiation and the localized energy, optical...
In this paper, we propose a number of resonant metamaterial-based approaches to enhance the power tr...
A one-dimensional magnetic plasmon propagating in a linear chain of single split ring resonators is ...
We experimentally demonstrate a simple approach for surface current engineering in a cross-coupled b...
In this contribution, the role of artificial resonant structures in increasing the transmission thro...
In this paper, we propose a number of resonant metamaterial-based approaches to enhance the power tr...
Conversion of photons to electrical energy has a wide variety of applications including imaging, sol...
We demonstrate that the spectral location of extraordinary optical transmission (EOT) resonances in ...
The optics and photonics development is currently driven towards nanometer scales. However, diffrac...
Surface plasmons have been accessed with mid-IR light on Ni microarrays of subwavelength apertures u...
The interaction of magnetic resonators connected by nano-antennas is studied for the first time. Com...
In this letter, we propose a resonant approach to achieve enhanced power transmission through electr...
In this letter, we propose the employment of nano-rings made of silver spheres, to enhance the trans...
"In this Chapter, the role of complex artificial structures in enhancing the power transmission thro...
ABSTRACT: We experimentally demonstrate a simple approach for surface current engineering in a cross...
By providing a connection between the freely propagating radiation and the localized energy, optical...
In this paper, we propose a number of resonant metamaterial-based approaches to enhance the power tr...
A one-dimensional magnetic plasmon propagating in a linear chain of single split ring resonators is ...
We experimentally demonstrate a simple approach for surface current engineering in a cross-coupled b...
In this contribution, the role of artificial resonant structures in increasing the transmission thro...
In this paper, we propose a number of resonant metamaterial-based approaches to enhance the power tr...
Conversion of photons to electrical energy has a wide variety of applications including imaging, sol...
We demonstrate that the spectral location of extraordinary optical transmission (EOT) resonances in ...
The optics and photonics development is currently driven towards nanometer scales. However, diffrac...
Surface plasmons have been accessed with mid-IR light on Ni microarrays of subwavelength apertures u...
The interaction of magnetic resonators connected by nano-antennas is studied for the first time. Com...