Janus and Huygens' dipolar sources for near-field directionality
arXiv:1708.02494 · doi:10.1103/PhysRevLett.120.117402
Abstract
Controlling directionality of emission, scattering and waveguiding is an important requirement in quantum optical technology, integrated photonics and new metasurface designs, as well as radio and microwave engineering. Recently, several approaches have been developed to achieve unidirectional scattering in the far-field relying on Huygens' dipolar sources, and in waveguided optics based on spin-Hall effects involving circularly polarised electric or magnetic dipoles, all of which can be realised with plasmonic or dielectric nanoparticles. Here we show that there exists a dipolar source complimentary to Huygens' dipole, termed Janus dipole, which is not directional in the far-field, but its coupling to waveguided modes is topologically protected so that it is allowed on one side of the dipole but not on the opposite side. The near field directionality of the Huygens' dipole is also revealed and a generalised Kerker's condition for far- and near-field directionality is introduced. Circular electric and magnetic dipoles, together with Huygens' and Janus dipolar sources, form a complete set of directional dipolar sources in far- and near-field, paving the way for promising applications.
References in corpus (6)
- Directional visible light scattering by silicon nanoparticles
- Quantum spin Hall effect of light
- Chiral nanophotonic waveguide interface based on spin-orbit coupling of light
- Optical Momentum, Spin, and Angular Momentum in Dispersive Media
- Dielectric nanoantenna as an efficient and ultracompact demultiplexer for surface waves
- Adding a spin to Kerker's condition: arbitrary scattering direction tuning of nano-antennas with designed excitation
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