We study the near-field and far-field optical responses of nanoparticle-on-film systems using single-nanoparticle spectroscopy and numerical simulations. We find that the optical spectra contain three dominant modes: a transverse dipole, quadrupole mode, and a dominant vertical antenna mode. We vary the thickness of the metal film from 10 to 45 nm and find that the vertical antenna mode wavelength is nearly independent of the film thickness. In contrast, we find that the associated near-field enhancement in the gap between the particle and the film strongly depends on the film thickness. This trend is also observed in the far field where the vertical antenna mode strongly increases in amplitude relative to the quadrupole for the increasing ...
We present a computational study of the near-field enhancement properties from a plasmonic nanomater...
Noble metal structures with size in the sub 100 nm range exhibit extraordinary optical properties du...
As a newly discovered surface plasmon resonance system, the nanoparticle dimer film structure provid...
We study the near-field and far-field optical responses of nanoparticle-on-film systems using single...
We study the near-field and far-field optical responses of nanoparticle-on-film systems using single...
We study the near-field and far-field optical responses of nanoparticle-on-film systems using single...
We study the near-field and far-field optical responses of nanoparticle-on-film systems using single...
\u3cp\u3eWe study the near-field and far-field optical responses of nanoparticle-on-film systems usi...
In this and the following paper (parts I and II, respectively), we systematically study the interact...
We systematically study the effect of near-field plasmon–exciton interactions between metal nanopart...
One of the most important and distinctive features of plasmonic nanostructures is their ability to c...
Noble metal structures with size in the sub 100 nm range exhibit extraordinary optical properties du...
In this and the following paper (parts I and II, respectively), we systematically study the interact...
In this and the following paper (parts I and II, respectively), we systematically study the interact...
Studying the optical properties of coupled plasmonic systems is important for both fundamental under...
We present a computational study of the near-field enhancement properties from a plasmonic nanomater...
Noble metal structures with size in the sub 100 nm range exhibit extraordinary optical properties du...
As a newly discovered surface plasmon resonance system, the nanoparticle dimer film structure provid...
We study the near-field and far-field optical responses of nanoparticle-on-film systems using single...
We study the near-field and far-field optical responses of nanoparticle-on-film systems using single...
We study the near-field and far-field optical responses of nanoparticle-on-film systems using single...
We study the near-field and far-field optical responses of nanoparticle-on-film systems using single...
\u3cp\u3eWe study the near-field and far-field optical responses of nanoparticle-on-film systems usi...
In this and the following paper (parts I and II, respectively), we systematically study the interact...
We systematically study the effect of near-field plasmon–exciton interactions between metal nanopart...
One of the most important and distinctive features of plasmonic nanostructures is their ability to c...
Noble metal structures with size in the sub 100 nm range exhibit extraordinary optical properties du...
In this and the following paper (parts I and II, respectively), we systematically study the interact...
In this and the following paper (parts I and II, respectively), we systematically study the interact...
Studying the optical properties of coupled plasmonic systems is important for both fundamental under...
We present a computational study of the near-field enhancement properties from a plasmonic nanomater...
Noble metal structures with size in the sub 100 nm range exhibit extraordinary optical properties du...
As a newly discovered surface plasmon resonance system, the nanoparticle dimer film structure provid...