We numerically investigate the second harmonic generation from different plasmonic systems and evidence the key role played in their nonlinear response by the phase at the fundamental wavelength. In the case of a single plasmonic nanorod, the interference between the second harmonic dipolar and quadrupolar emission modes depends on their relative phase, which is deeply related to the excitation wavelength. The knowledge obtained in this simple case is then used to describe and understand the nonlinear response from a more complex structure, namely a gold nanodolmen. The complex phase evolution associated with a Fano resonance arising at the fundamental wavelength enables dramatically modifying the second harmonic emission patterns from plas...
Plasmonic nanoantennas emit two-photon photoluminescence, which is much stronger than their second h...
The control of nonlinear optical signals in nanostructured systems is pivotal to develop functional ...
The control of nonlinear optical signals in nanostructured systems is pivotal to develop functional ...
We numerically investigate the second harmonic generation from different plasmonic systems and evide...
We numerically investigate the second harmonic generation from different plasmonic systems and evide...
We numerically investigate the second harmonic generation from different plasmonic systems and evide...
\u3cp\u3eWe numerically investigate the second harmonic generation from different plasmonic systems ...
We show that nonlinear optical processes of nanoparticles can be controlled by the presence of inter...
We numerically study second harmonic generation from dipole gold nanoantennas by analyzing the diffe...
Plasmonic resonators can provide large local electric fields when the gap between metal components i...
Nonlinear effects can be enhanced and tailored on a subwavelength scale by taking advantage of high ...
In this work, we investigate the generation of second- harmonic light by gold nanorods and demonstra...
This book examines nonlinear optical effects in nonlinear nanophotonics, plasmonics, and novel mater...
Thesis (Ph.D.)--Boston UniversityMetal nanostructures supporting localized surface plasmon (LSP) res...
Journal ArticleSurface enhancement of electromagnetic fields in plasmonic hot spots formed on rough ...
Plasmonic nanoantennas emit two-photon photoluminescence, which is much stronger than their second h...
The control of nonlinear optical signals in nanostructured systems is pivotal to develop functional ...
The control of nonlinear optical signals in nanostructured systems is pivotal to develop functional ...
We numerically investigate the second harmonic generation from different plasmonic systems and evide...
We numerically investigate the second harmonic generation from different plasmonic systems and evide...
We numerically investigate the second harmonic generation from different plasmonic systems and evide...
\u3cp\u3eWe numerically investigate the second harmonic generation from different plasmonic systems ...
We show that nonlinear optical processes of nanoparticles can be controlled by the presence of inter...
We numerically study second harmonic generation from dipole gold nanoantennas by analyzing the diffe...
Plasmonic resonators can provide large local electric fields when the gap between metal components i...
Nonlinear effects can be enhanced and tailored on a subwavelength scale by taking advantage of high ...
In this work, we investigate the generation of second- harmonic light by gold nanorods and demonstra...
This book examines nonlinear optical effects in nonlinear nanophotonics, plasmonics, and novel mater...
Thesis (Ph.D.)--Boston UniversityMetal nanostructures supporting localized surface plasmon (LSP) res...
Journal ArticleSurface enhancement of electromagnetic fields in plasmonic hot spots formed on rough ...
Plasmonic nanoantennas emit two-photon photoluminescence, which is much stronger than their second h...
The control of nonlinear optical signals in nanostructured systems is pivotal to develop functional ...
The control of nonlinear optical signals in nanostructured systems is pivotal to develop functional ...