Javascript must be enabled to continue!
Gold cauldrons as efficient candidates for plasmonic tweezers
View through CrossRef
AbstractIn this report, gold cauldrons are proposed and proved as efficient candidates for plasmonic tweezers. Gold cauldrons benefit from high field localization in the vicinity of their apertures, leading to particle trapping by a reasonably low power source. The plasmonic trapping capability of a single gold cauldron and a cauldrons cluster are studied by investigating the plasmon-induced variations of the optical trap stiffness in a conventional optical tweezers configuration. This study shows that the localized plasmonic fields and the consequent plasmonic forces lead to enhanced trap stiffness in the vicinity of the cauldrons. This observation is pronounced for the cauldrons cluster, due to the additive plasmonic fields of the neighboring cauldrons. Strong direct plasmonic tweezing by the gold cauldrons cluster is also investigated and confirmed by our simulations and experimental results. In addition to the presented plasmonic trapping behavior, gold cauldrons benefit from a low cost and simple fabrication process with acceptable controllability over the structural average dimensions and plasmonic behavior, making them attractive for emerging lab-on-a-chip optophoresis applications.
Springer Science and Business Media LLC
Title: Gold cauldrons as efficient candidates for plasmonic tweezers
Description:
AbstractIn this report, gold cauldrons are proposed and proved as efficient candidates for plasmonic tweezers.
Gold cauldrons benefit from high field localization in the vicinity of their apertures, leading to particle trapping by a reasonably low power source.
The plasmonic trapping capability of a single gold cauldron and a cauldrons cluster are studied by investigating the plasmon-induced variations of the optical trap stiffness in a conventional optical tweezers configuration.
This study shows that the localized plasmonic fields and the consequent plasmonic forces lead to enhanced trap stiffness in the vicinity of the cauldrons.
This observation is pronounced for the cauldrons cluster, due to the additive plasmonic fields of the neighboring cauldrons.
Strong direct plasmonic tweezing by the gold cauldrons cluster is also investigated and confirmed by our simulations and experimental results.
In addition to the presented plasmonic trapping behavior, gold cauldrons benefit from a low cost and simple fabrication process with acceptable controllability over the structural average dimensions and plasmonic behavior, making them attractive for emerging lab-on-a-chip optophoresis applications.
Related Results
Lysine-selective molecular tweezers are cell penetrant and concentrate in lysosomes
Lysine-selective molecular tweezers are cell penetrant and concentrate in lysosomes
AbstractLysine-selective molecular tweezers are promising drug candidates against proteinopathies, viral infection, and bacterial biofilm. Despite demonstration of their efficacy i...
Optical Tweezers
Optical Tweezers
AbstractInfrared lasers focused with high numerical aperture into a microscope are used to exert and measure forces in the piconewton range. Simple light pressure and the more comp...
Vestlandskedler og malede glas
Vestlandskedler og malede glas
Vestland Cauldrons and Painted GlassVestland cauldrons have been thoroughly treated and discussed by authorities such as A. Bjørn, G. Ekholm and C. Hawkes). Denmark has not in the...
Study on Magnetic and Plasmonic Properties of Fe3O4-PEI-Au and Fe3O4-PEI-Ag Nanoparticles
Study on Magnetic and Plasmonic Properties of Fe3O4-PEI-Au and Fe3O4-PEI-Ag Nanoparticles
Magnetic–plasmonic nanoparticles (NPs) have attracted great interest in many fields because they can exhibit more physical and chemical properties than individual magnetic or plasm...
Plasmonic nanostructures in photodetection, energy conversion and beyond
Plasmonic nanostructures in photodetection, energy conversion and beyond
Abstract
This review article aims to provide a comprehensive understanding of plasmonic nanostructures and their applications, especially on the integration of pl...
The physics and applications of a 3D plasmonic nanostructure
The physics and applications of a 3D plasmonic nanostructure
In this work, the dynamics of electromagnetic field interactions with free electrons in a 3D metallic nanostructure is evaluated theoretically. This dissertation starts by reviewin...
CAULDRONS IN THE CULTURAL TRADITIONS OF THE OB UGRIANS AND SAMOYEDS: THE ARCHAEOLOGICAL ARTIFACT AND ‘LIVING’ TRADITION
CAULDRONS IN THE CULTURAL TRADITIONS OF THE OB UGRIANS AND SAMOYEDS: THE ARCHAEOLOGICAL ARTIFACT AND ‘LIVING’ TRADITION
The first part of the article published in this journal considers the archaeological context along with the func-tional, morphological and social aspects associated with cauldrons ...
Vessels of Death: Sacred Cauldrons in Archaeology and Myth
Vessels of Death: Sacred Cauldrons in Archaeology and Myth
This paper explores links between the archaeology of cauldron deposition during the European Iron Age and the mythology of cauldrons as presented in the early vernacular texts of W...

