Here, we quantitatively monitored and analyzed the spectral redistributions of the coupled plasmonic modes of trimeric Au nanostructures with two similar to 1 nm interparticle gaps and single-dye-labeled DNA in each gap as a function of varying trimer symmetries. Our precise Mie scattering measurement with the laser-scanning-assisted dark-field microscopy allows for individual visualization of the orientations of the radiation fields of the coupled plasmon modes of the trimers and analyzing the magnitude and direction of the surface-enhanced Raman scattering (SERS) signals from the individual plasmonic trimers. We found that the geometric transition from acute-angled trimer to linear trimer induces the red shift of the longitudinally polari...
Manipulating light on the nanometer scale is a challenging topic not only from a fundamental point o...
Depending on the experimental conditions and plasmonic systems, the correlations between near-field ...
Localized and periodic optical modes co-exist in plasmonic nanohole arrays leading to a unique mix o...
Understanding the detailed electromagnetic field distribution inside a plasmonically coupled nanostr...
Understanding the detailed electromagnetic field distribution inside a plasmonically coupled nanostr...
Surface-enhanced Raman scattering (SERS) from organic molecules is used to study how geometry affect...
<p>The electromagnetic properties of various plasmonic nanostructures are investigated. These nanost...
We report DNA-mediated simple synthetic methods to obtain anisotropic plasmonic nanostructures with ...
We report that rhomb-shaped metal nanoantenna arrays support multiple plasmonic resonances, making t...
In this work, plasmonic nano-gaps consisting of a silver nanoparticle coupled to an extended silver ...
The interaction of light with metal nanoparticles leads to novel phenomena mediated by surface plasm...
Depending on the experimental conditions and plasmonic systems, the correlations between near-field ...
Electromagnetic theory predicts that the optimal value of the localized plasmon resonance (LPR) wave...
Metallic nanogap dimers are extremely useful for enhancing surface-enhanced Raman scattering and var...
The understanding of the relationship between plasmonic and surface-enhanced Raman scattering (SERS)...
Manipulating light on the nanometer scale is a challenging topic not only from a fundamental point o...
Depending on the experimental conditions and plasmonic systems, the correlations between near-field ...
Localized and periodic optical modes co-exist in plasmonic nanohole arrays leading to a unique mix o...
Understanding the detailed electromagnetic field distribution inside a plasmonically coupled nanostr...
Understanding the detailed electromagnetic field distribution inside a plasmonically coupled nanostr...
Surface-enhanced Raman scattering (SERS) from organic molecules is used to study how geometry affect...
<p>The electromagnetic properties of various plasmonic nanostructures are investigated. These nanost...
We report DNA-mediated simple synthetic methods to obtain anisotropic plasmonic nanostructures with ...
We report that rhomb-shaped metal nanoantenna arrays support multiple plasmonic resonances, making t...
In this work, plasmonic nano-gaps consisting of a silver nanoparticle coupled to an extended silver ...
The interaction of light with metal nanoparticles leads to novel phenomena mediated by surface plasm...
Depending on the experimental conditions and plasmonic systems, the correlations between near-field ...
Electromagnetic theory predicts that the optimal value of the localized plasmon resonance (LPR) wave...
Metallic nanogap dimers are extremely useful for enhancing surface-enhanced Raman scattering and var...
The understanding of the relationship between plasmonic and surface-enhanced Raman scattering (SERS)...
Manipulating light on the nanometer scale is a challenging topic not only from a fundamental point o...
Depending on the experimental conditions and plasmonic systems, the correlations between near-field ...
Localized and periodic optical modes co-exist in plasmonic nanohole arrays leading to a unique mix o...