Funder: Leverhulme TrustFunder: Trinity College, University of CambridgeFunder: Isaac Newton TrustTransient atomic protrusions in plasmonic nanocavities confine optical fields to sub-1-nm3 picocavities, allowing the optical interrogation of single molecules at room temperature. While picocavity formation is linked to both the local chemical environment and optical irradiation, the role of light in localizing the picocavity formation is unclear. Here, we combine information from thousands of picocavity events and simultaneously compare the transient Raman scattering arising from two incident pump wavelengths. Full analysis of the data set suggests that light suppresses the local effective barrier height for adatom formation and that the init...
In this work, plasmonic nano-gaps consisting of a silver nanoparticle coupled to an extended silver ...
Surface-enhanced vibrational spectroscopy has emerged as a powerful tool to probe the (photo)chemist...
Hierarchical plasmonic–photonic microspheres (PPMs) with high controllability in their structures an...
Transient atomic protrusions in plasmonic nanocavities confine optical fields to sub-1-nm3 picocavit...
Plasmonic nanocavities, such as a nanometre scale gap between a gold nanoparticle and gold mirror (N...
Trapping light with noble metal nanostructures overcomes the diffraction limit and can confine light...
Reproducible confinement of light on the nanoscale is essential for the ability to observe and contr...
Reproducible confinement of light on the nanoscale is essential for the ability to observe and contr...
Reproducible confinement of light on the nanoscale is essential for the ability to observe and contr...
The Raman scattering of light by molecular vibrations offers a powerful technique to 'fingerprint' m...
Reproducible confinement of light on the nanoscale is essential for the ability to observe and contr...
The research reported in this thesis focuses on the high field localisation formed in the nanometric...
The authors thank Javier Aizpurua (CSIC − UPV/EHU/DIPC) for helpful discussions. We acknowledge fina...
[EN] Plasmonic self-assembled nanocavities are ideal platforms for extreme light localization as the...
Trapping light with noble metal nanostructures overcomes the diffraction limit and can confine light...
In this work, plasmonic nano-gaps consisting of a silver nanoparticle coupled to an extended silver ...
Surface-enhanced vibrational spectroscopy has emerged as a powerful tool to probe the (photo)chemist...
Hierarchical plasmonic–photonic microspheres (PPMs) with high controllability in their structures an...
Transient atomic protrusions in plasmonic nanocavities confine optical fields to sub-1-nm3 picocavit...
Plasmonic nanocavities, such as a nanometre scale gap between a gold nanoparticle and gold mirror (N...
Trapping light with noble metal nanostructures overcomes the diffraction limit and can confine light...
Reproducible confinement of light on the nanoscale is essential for the ability to observe and contr...
Reproducible confinement of light on the nanoscale is essential for the ability to observe and contr...
Reproducible confinement of light on the nanoscale is essential for the ability to observe and contr...
The Raman scattering of light by molecular vibrations offers a powerful technique to 'fingerprint' m...
Reproducible confinement of light on the nanoscale is essential for the ability to observe and contr...
The research reported in this thesis focuses on the high field localisation formed in the nanometric...
The authors thank Javier Aizpurua (CSIC − UPV/EHU/DIPC) for helpful discussions. We acknowledge fina...
[EN] Plasmonic self-assembled nanocavities are ideal platforms for extreme light localization as the...
Trapping light with noble metal nanostructures overcomes the diffraction limit and can confine light...
In this work, plasmonic nano-gaps consisting of a silver nanoparticle coupled to an extended silver ...
Surface-enhanced vibrational spectroscopy has emerged as a powerful tool to probe the (photo)chemist...
Hierarchical plasmonic–photonic microspheres (PPMs) with high controllability in their structures an...