Light–matter interactions are often considered to be mediated by the electric component of light only, neglecting the magnetic contribution. However, the electromagnetic energy density is equally distributed between both parts of the optical fields. Within this scope, we experimentally demonstrate here, in excellent agreement with numerical simulations, that plasmonic nanostructures can selectively manipulate and tune the magnetic versus electric emission of luminescent nanocrystals. In particular, we show selective enhancement or decay of magnetic and electric emission from trivalent europium-doped nanoparticles in the vicinity of plasmonic nanocavities, designed to efficiently couple to either the electric or magnetic emission of the quan...
Nanophotonic structures, which offer a sub-wavelength control over light and nearby emitters, promis...
bS Supporting Information Nanoplasmonics—the physics of nanoconfined collectiveoscillations of the c...
Nanophotonic structures, which offer a sub-wavelength control over light and nearby emitters, promis...
International audienceLight–matter interactions are often considered to be mediated by the electric ...
Electric and magnetic optical fields carry the same amount of energy. Nevertheless, the efficiency w...
Electric and magnetic optical fields carry the same amount of energy. Nevertheless, the efficiency w...
International audienceElectric and magnetic optical fields carry the same amount of energy. Neverthe...
International audienceElectric and magnetic optical fields carry the same amount of energy. Neverthe...
International audienceElectric and magnetic optical fields carry the same amount of energy. Neverthe...
International audienceElectric and magnetic optical fields carry the same amount of energy. Neverthe...
International audienceElectric and magnetic optical fields carry the same amount of energy. Neverthe...
Electric and magnetic optical fields carry the same amount of energy. Nevertheless, the efficiency w...
International audienceElectric and magnetic optical fields carry the same amount of energy. Neverthe...
During the last years, technological progresses in the field of nanophotonic have allowed the develo...
Electric and magnetic optical fields carry the same amount of energy. Nevertheless, the efficiency w...
Nanophotonic structures, which offer a sub-wavelength control over light and nearby emitters, promis...
bS Supporting Information Nanoplasmonics—the physics of nanoconfined collectiveoscillations of the c...
Nanophotonic structures, which offer a sub-wavelength control over light and nearby emitters, promis...
International audienceLight–matter interactions are often considered to be mediated by the electric ...
Electric and magnetic optical fields carry the same amount of energy. Nevertheless, the efficiency w...
Electric and magnetic optical fields carry the same amount of energy. Nevertheless, the efficiency w...
International audienceElectric and magnetic optical fields carry the same amount of energy. Neverthe...
International audienceElectric and magnetic optical fields carry the same amount of energy. Neverthe...
International audienceElectric and magnetic optical fields carry the same amount of energy. Neverthe...
International audienceElectric and magnetic optical fields carry the same amount of energy. Neverthe...
International audienceElectric and magnetic optical fields carry the same amount of energy. Neverthe...
Electric and magnetic optical fields carry the same amount of energy. Nevertheless, the efficiency w...
International audienceElectric and magnetic optical fields carry the same amount of energy. Neverthe...
During the last years, technological progresses in the field of nanophotonic have allowed the develo...
Electric and magnetic optical fields carry the same amount of energy. Nevertheless, the efficiency w...
Nanophotonic structures, which offer a sub-wavelength control over light and nearby emitters, promis...
bS Supporting Information Nanoplasmonics—the physics of nanoconfined collectiveoscillations of the c...
Nanophotonic structures, which offer a sub-wavelength control over light and nearby emitters, promis...