International audienceElectric and magnetic optical fields carry the same amount of energy. Nevertheless, the efficiency with which matter interacts with electric optical fields is commonly accepted to be at least 4 orders of magnitude higher than with magnetic optical fields. Here, we experimentally demonstrate that properly designed photonic nanoantennas can selectively manipulate the magnetic versus electric emission of luminescent nanocrystals. In particular, we show selective enhancement of magnetic emission from trivalent europium-doped nanoparticles in the vicinity of a nanoantenna tailored to exhibit a magnetic resonance. Specifically, by controlling the spatial coupling between emitters and an individual nanoresonator located at th...
International audienceMagnetic light and matter interactions are generally too weak to be detected, ...
International audienceMagnetic light and matter interactions are generally too weak to be detected, ...
International audienceMagnetic light and matter interactions are generally too weak to be detected, ...
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...
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...
Electric and magnetic optical fields carry the same amount of energy. Nevertheless, the efficiency w...
International audienceLight–matter interactions are often considered to be mediated by the electric ...
Light–matter interactions are often considered to be mediated by the electric component of light onl...
International audienceMagnetic dipole transitions in matter are known to be orders of magnitude weak...
International audienceMagnetic light and matter interactions are generally too weak to be detected, ...
International audienceMagnetic light and matter interactions are generally too weak to be detected, ...
International audienceMagnetic light and matter interactions are generally too weak to be detected, ...
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...
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...
Electric and magnetic optical fields carry the same amount of energy. Nevertheless, the efficiency w...
International audienceLight–matter interactions are often considered to be mediated by the electric ...
Light–matter interactions are often considered to be mediated by the electric component of light onl...
International audienceMagnetic dipole transitions in matter are known to be orders of magnitude weak...
International audienceMagnetic light and matter interactions are generally too weak to be detected, ...
International audienceMagnetic light and matter interactions are generally too weak to be detected, ...
International audienceMagnetic light and matter interactions are generally too weak to be detected, ...