High-index nanoparticles are known to support radiationless states called anapoles, where dipolar and toroidal moments interfere to inhibit scattering to the far field. In order to exploit the striking properties arising from these interference conditions in photonic integrated circuits, the particles must be driven in-plane via integrated waveguides. Here, we address the excitation of electric anapole states in silicon disks when excited on-chip at telecom wavelengths. In contrast to normal illumination, we find that the anapole condition—identified by a strong reduction of the scattering—does not overlap with the near-field energy maximum, an observation attributed to retardation effects. We experimentally verify the two distinct spectral...
Nonradiating current configurations have been drawing the attention of the physics community for man...
Summary form only given. One of the main challenges in photonics is the integration of ultrafast coh...
High refractive index dielectric nanostructures represent a new frontier in nanophotonics, and the u...
Abstract High-index nanoparticles are known to support radiationless states called anapoles, where d...
[EN] Anapole states¿characterized by a strong suppression of far-field scattering¿naturally arise in...
Resonant optical excitation of high index dielectric nanoparticles offers unique opportunities for r...
All-dielectric metamaterials are a promising platform for the development of integrated photonics ap...
All-dielectric metamaterials are a promising platform for the development of integrated photonics ap...
Nonradiating current configurations attract attention of physicists for many years as possible model...
High-index dielectric nanostructures have recently become prominent forefront alternatives for manip...
The polarization- and angle-resolved optical responses of the anapole mode in silicon nano-disks arr...
Resonant optical excitation of dielectric particles offers unique opportunities for future optical a...
Even though the study of non-radiating objects has been part of fundamental physics for a long time,...
Dielectric nanostructures exhibit low-loss electrical and magnetic resonance, making them ideal for ...
Enhancement of inelastic light emission processes through resonant excitation usually correlates wit...
Nonradiating current configurations have been drawing the attention of the physics community for man...
Summary form only given. One of the main challenges in photonics is the integration of ultrafast coh...
High refractive index dielectric nanostructures represent a new frontier in nanophotonics, and the u...
Abstract High-index nanoparticles are known to support radiationless states called anapoles, where d...
[EN] Anapole states¿characterized by a strong suppression of far-field scattering¿naturally arise in...
Resonant optical excitation of high index dielectric nanoparticles offers unique opportunities for r...
All-dielectric metamaterials are a promising platform for the development of integrated photonics ap...
All-dielectric metamaterials are a promising platform for the development of integrated photonics ap...
Nonradiating current configurations attract attention of physicists for many years as possible model...
High-index dielectric nanostructures have recently become prominent forefront alternatives for manip...
The polarization- and angle-resolved optical responses of the anapole mode in silicon nano-disks arr...
Resonant optical excitation of dielectric particles offers unique opportunities for future optical a...
Even though the study of non-radiating objects has been part of fundamental physics for a long time,...
Dielectric nanostructures exhibit low-loss electrical and magnetic resonance, making them ideal for ...
Enhancement of inelastic light emission processes through resonant excitation usually correlates wit...
Nonradiating current configurations have been drawing the attention of the physics community for man...
Summary form only given. One of the main challenges in photonics is the integration of ultrafast coh...
High refractive index dielectric nanostructures represent a new frontier in nanophotonics, and the u...