We propose a novel deterministic protocol, based on continuous light flows, that enables us to control the concentration of light in generic plasmonic nanostructures. Based on an exact inversion of the response tensor of the nanosystem, the so-called deterministic optical inversion protocol provides a physical solution for the incident field leading to a desired near-field pattern, expressed in the form of a coherent superposition of high-order beams. We demonstrate the high degree of control achieved on complex plasmonic architectures and quantify its efficiency and accuracy.4 page(s
Tuchscherer P, Rewitz C, Voronine DV, Javier Garcia de Abajo F, Pfeiffer W, Brixner T. Analytic cohe...
There has been an escalation in interest in developing methods to control the near field because of ...
Nanophotonic structures make it possible to precisely engineer the optical response at deep subwavel...
Aeschlimann M, Bauer M, Bayer D, et al. Deterministic control of subwavelength field localization in...
The last decade has seen subwavelength focusing of the electromagnetic field in the proximity of nan...
The last decade has seen subwavelength focusing of the electromagnetic field in the proximity of nan...
The last decade has seen subwavelength focusing of the electromagnetic field in the proximity of nan...
The last decade has seen subwavelength focusing of the electromagnetic field in the proximity of nan...
The last decade has seen subwavelength focusing of the electromagnetic field in the proximity of nan...
The last decade has seen subwavelength focusing of the electromagnetic field in the proximity of nan...
We have studied the plasmonic properties of aperiodic arrays of identical nanoparticles (NPs) formed...
We report results on the possibility of subwavelength coherent control of light in coupled plasmonic...
We demonstrate experimentally that plasmon resonant nanoparticle chains exhibit a nanoscale localize...
In the last decades, nanostructures have unlocked myriads of functionalities in nanophotonics by eng...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
Tuchscherer P, Rewitz C, Voronine DV, Javier Garcia de Abajo F, Pfeiffer W, Brixner T. Analytic cohe...
There has been an escalation in interest in developing methods to control the near field because of ...
Nanophotonic structures make it possible to precisely engineer the optical response at deep subwavel...
Aeschlimann M, Bauer M, Bayer D, et al. Deterministic control of subwavelength field localization in...
The last decade has seen subwavelength focusing of the electromagnetic field in the proximity of nan...
The last decade has seen subwavelength focusing of the electromagnetic field in the proximity of nan...
The last decade has seen subwavelength focusing of the electromagnetic field in the proximity of nan...
The last decade has seen subwavelength focusing of the electromagnetic field in the proximity of nan...
The last decade has seen subwavelength focusing of the electromagnetic field in the proximity of nan...
The last decade has seen subwavelength focusing of the electromagnetic field in the proximity of nan...
We have studied the plasmonic properties of aperiodic arrays of identical nanoparticles (NPs) formed...
We report results on the possibility of subwavelength coherent control of light in coupled plasmonic...
We demonstrate experimentally that plasmon resonant nanoparticle chains exhibit a nanoscale localize...
In the last decades, nanostructures have unlocked myriads of functionalities in nanophotonics by eng...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
Tuchscherer P, Rewitz C, Voronine DV, Javier Garcia de Abajo F, Pfeiffer W, Brixner T. Analytic cohe...
There has been an escalation in interest in developing methods to control the near field because of ...
Nanophotonic structures make it possible to precisely engineer the optical response at deep subwavel...