The physical properties of matter rely fundamentally on the symmetry of constituent building blocks. This is particularly true for structures that interact with light via the collective motion of their conduction electrons (i.e., plasmonic materials), where the observation of exotic optical effects, such as negative refraction and electromagnetically induced transparency, require the coupling of modes that are only present in systems with nontrivial broken symmetries. Lithography has been the predominant fabrication technique for constructing plasmonic metamaterials, as it can be used to form patterns of arbitrary complexity, including those with broken symmetry. Here, we show that low-symmetry, one-dimensional plasmonic structures that wou...
Plasmonic molecules are small assemblies of metal nanoparticles with definitive bond angles and gap ...
We fabricate heterocomponent dimers built from a single 40 nm gold and a single 40 nm silver nanopar...
Dynamic materials have always held the interest of scientists because they change their properties i...
The physical properties of matter rely fundamentally on the symmetry of constituent building blocks....
Programmable self-assembly of nucleic acids enables the fabrication of custom, precise objects with ...
Metallic nanostructures can be used to manipulate light on the subwavelength scale to create tailore...
ABSTRACT: Metallic nanostructures can be used to manip-ulate light on the subwavelength scale to cre...
Plasmonics is the science and technology exploiting the optical properties of surface free electrons...
© 2016 American Chemical Society. We fabricate heterocomponent dimers built from a single 40 nm gold...
A reconfigurable plasmonic nanosystem combines an active plasmonic structure with a regulated physic...
DNA-functionalized nanoparticles, including plasmonic nanoparticles, can be assembled into a wide ra...
Metamaterials are architectures that interact with light in novel ways by virtue of symmetry manipul...
Fabrication of plasmonic metamolecules (PMs) with rationally designed complexity is one of the major...
Molecular chemistry offers a unique toolkit to draw inspiration for the design of artificial metamol...
Control of both photonic and plasmonic coupling in a single optical device represents a challenge du...
Plasmonic molecules are small assemblies of metal nanoparticles with definitive bond angles and gap ...
We fabricate heterocomponent dimers built from a single 40 nm gold and a single 40 nm silver nanopar...
Dynamic materials have always held the interest of scientists because they change their properties i...
The physical properties of matter rely fundamentally on the symmetry of constituent building blocks....
Programmable self-assembly of nucleic acids enables the fabrication of custom, precise objects with ...
Metallic nanostructures can be used to manipulate light on the subwavelength scale to create tailore...
ABSTRACT: Metallic nanostructures can be used to manip-ulate light on the subwavelength scale to cre...
Plasmonics is the science and technology exploiting the optical properties of surface free electrons...
© 2016 American Chemical Society. We fabricate heterocomponent dimers built from a single 40 nm gold...
A reconfigurable plasmonic nanosystem combines an active plasmonic structure with a regulated physic...
DNA-functionalized nanoparticles, including plasmonic nanoparticles, can be assembled into a wide ra...
Metamaterials are architectures that interact with light in novel ways by virtue of symmetry manipul...
Fabrication of plasmonic metamolecules (PMs) with rationally designed complexity is one of the major...
Molecular chemistry offers a unique toolkit to draw inspiration for the design of artificial metamol...
Control of both photonic and plasmonic coupling in a single optical device represents a challenge du...
Plasmonic molecules are small assemblies of metal nanoparticles with definitive bond angles and gap ...
We fabricate heterocomponent dimers built from a single 40 nm gold and a single 40 nm silver nanopar...
Dynamic materials have always held the interest of scientists because they change their properties i...