CONSPECTUS: Plasmonic coupling-based electromagnetic field localization and enhancement are becoming increasingly important in chemistry, nanoscience, materials science, physics, and engineering over the past decade, generating a number of new concepts and applications. Among the plasmonically coupled nanostructures, metal nanostructures with nanogaps have been of special interest due to their ultrastrong electromagnetic fields and controllable optical properties that can be useful for a variety of signal enhancements such as surface-enhanced Raman scattering (SERS). The Raman scattering process is highly inefficient, with a very small cross-section, and Raman signals are often poorly reproducible, meaning that very strong, controllable SER...
Pairs of metal nanoparticles with a sub-10 nm gap are an efficient way to achieve extreme near-field...
Understanding the detailed electromagnetic field distribution inside a plasmonically coupled nanostr...
Surface enhanced Raman scattering (SERS) is a powerful analytical technique that allows the enhancem...
Plasmonic nanostructures are widely studied and used because of their useful size, shape, compositio...
Manipulating light on the nanometer scale is a challenging topic not only from a fundamental point o...
The precise design and synthesis of plasmonic nanostructures allow us to manipulate, enhance, and ut...
Surface-enhanced Raman scattering (SERS) has demonstrated single-molecule sensitivity and is becomin...
Metallic nanogap dimers are extremely useful for enhancing surface-enhanced Raman scattering and var...
The research reported in this thesis focuses on the high field localisation formed in the nanometric...
The nanogap is possibly the single most important physical entity in surface-enhanced Raman scatteri...
Technology based on the interaction between light and matter has entered something of a renaissance ...
ABSTRACT: Pairs of metal nanoparticles with a sub-10 nm gap are an efficient way to achieve extreme ...
This is the publisher’s final pdf. The published article is copyrighted by the author(s) and publish...
Nanogaps as “hot spots” with highly localized surface plasmon can generate ultrastrong electromagnet...
Effective surface enhancement of Raman scattering (SERS) requires strong near-field enhancement as w...
Pairs of metal nanoparticles with a sub-10 nm gap are an efficient way to achieve extreme near-field...
Understanding the detailed electromagnetic field distribution inside a plasmonically coupled nanostr...
Surface enhanced Raman scattering (SERS) is a powerful analytical technique that allows the enhancem...
Plasmonic nanostructures are widely studied and used because of their useful size, shape, compositio...
Manipulating light on the nanometer scale is a challenging topic not only from a fundamental point o...
The precise design and synthesis of plasmonic nanostructures allow us to manipulate, enhance, and ut...
Surface-enhanced Raman scattering (SERS) has demonstrated single-molecule sensitivity and is becomin...
Metallic nanogap dimers are extremely useful for enhancing surface-enhanced Raman scattering and var...
The research reported in this thesis focuses on the high field localisation formed in the nanometric...
The nanogap is possibly the single most important physical entity in surface-enhanced Raman scatteri...
Technology based on the interaction between light and matter has entered something of a renaissance ...
ABSTRACT: Pairs of metal nanoparticles with a sub-10 nm gap are an efficient way to achieve extreme ...
This is the publisher’s final pdf. The published article is copyrighted by the author(s) and publish...
Nanogaps as “hot spots” with highly localized surface plasmon can generate ultrastrong electromagnet...
Effective surface enhancement of Raman scattering (SERS) requires strong near-field enhancement as w...
Pairs of metal nanoparticles with a sub-10 nm gap are an efficient way to achieve extreme near-field...
Understanding the detailed electromagnetic field distribution inside a plasmonically coupled nanostr...
Surface enhanced Raman scattering (SERS) is a powerful analytical technique that allows the enhancem...