Search results: plasmonic

The effectiveness of the DNA origami method for placing molecules into plasmonic nanocavities

The effectiveness of the DNA origami method for placing molecules into plasmonic nanocavities

DIPCDIPC Photonics

By DIPC

In the realm of modern technology, controlling light at the smallest scales is crucial for advancements in areas like medical imaging, environmental sensing, and the development of new computing technologies. A recent study explores innovative methods to manipulate light emission from individual molecules, paving the way for significant progress in these fields. The role of […]

A giant optomechanical spring effect in plasmonic nanocavities

A giant optomechanical spring effect in plasmonic nanocavities

CFMDIPCDIPC Photonics

By DIPC

Molecular vibrations couple to visible light only weakly, have small mutual interactions, and hence are often ignored for non-linear optics. Still, molecular vibrations dominate electronic, thermal, and spin transport in a wide range of devices from photovoltaics to molecular electronics as well as being of fundamental interest. Surface-Enhanced Raman Spectroscopy (SERS) is well-established for studying […]

The unexpectedly rich excited-state dynamics of quantum dots in plasmonic cavities

The unexpectedly rich excited-state dynamics of quantum dots in plasmonic cavities

CFMDIPCDIPC Photonics

By DIPC

Plasmonic cavities formed by metallic surfaces are nanostructures that confine light to dimensions far smaller than the free-space wavelength, as they mix optical fields with electronic excitations. I t was not until the 1990s, with the appearance of accurate and reliable nanofabrication techniques, that plasmonics blossomed. It was found then that local fields around nanostructures […]

Plasmonic nanocrystals-cellulose hybrid

Plasmonic nanocrystals-cellulose hybrid

ChemistryCondensed matterMaterials

By DIPC

When we consider the variety of possible wonder applications of plasmonic nanoparticles we usually forget a key aspect: how these laboratory results can be transformed into something really usable in everyday life. For that to occur some not-that-simple problems must be resolved first. For example, plasmonic nanoparticles exhibit excellent light-harvesting properties in the visible spectral […]

The extreme nanophotonics of the plasmonic nanopatch

The extreme nanophotonics of the plasmonic nanopatch

Condensed matterMaterialsNanotechnologyQuantum physics

By DIPC

For centuries, metals were employed in optical applications only as mirrors and gratings. New vistas opened up in the late 1970s and early 1980s with the discovery of surface-enhanced Raman scattering (SERS) and the use of surface plasmon (collective electronic oscillations at the surface of metals) resonances for sensing. In a simplified picture and in […]

Plasmonic resonances in an aluminium magic cluster

Plasmonic resonances in an aluminium magic cluster

Condensed matter

By DIPC

Al13 − is one of the most attractive of the so-called magic clusters. It has a perfect icosahedral symmetry with an aluminum atom at the center, a closed-shell electronic configuration (40 electrons), and a large highest occupied molecular orbital−lowest unoccupied molecular orbital (HOMO− LUMO) gap. These features result in an unusual stability and chemical inertness […]

Shrinking plasmonic nanomatryoshkas

Shrinking plasmonic nanomatryoshkas

Condensed matterMaterialsPhysicsQuantum physics

By DIPC

We know that incident light can provoke a strong optical response in metallic nanostructures due to the excitation of resonant plasmonic modes, i.e, the electrons in the metal become excited by the photons in the incident light and oscillate collectively. One of the most interesting properties of plasmon resonances is their associated enhancement and confinement […]

The era of organo-plasmonic devices

The era of organo-plasmonic devices

Condensed matterPhysics

By DIPC

One of the greatest inventions of the 20th century, if not the greatest, was the transistor. It revolutionized the electronics industry and changed the way people around the world lived, learned, worked, and played. Its invention marked the beginning of solid state electronics which quickly reduced the size and power requirements of existing electronic tube […]

Optomechanical control of molecular motion

Optomechanical control of molecular motion

Physics

By DIPC

At first glance, molecules seem too small and too chaotic to be controlled with light. Their atoms jiggle ceaselessly, driven by thermal energy, and their vibrations—tiny oscillations of chemical bonds—usually remain hidden in the background. But recent work has shown that we can, in fact, use light not only to measure these vibrations but also […]