General point dipole theory for periodic metasurfaces: magnetoelectric scattering lattices coupled to planar photonic structures
arXiv:1512.00582 · doi:10.1364/OE.25.021358
Abstract
We study semi-analytically the light emission and absorption properties of arbitrary stratified photonic structures with embedded two-dimensional magnetoelectric point scattering lattices, as used in recent plasmon-enhanced LEDs and solar cells. By employing dyadic Green's function for the layered structure in combination with Ewald lattice summation to deal with the particle lattice, we develop an efficient method to study the coupling between planar 2D scattering lattices of plasmonic, or metamaterial point particles, coupled to layered structures. Using the `array scanning method' we deal with localized sources. Firstly, we apply our method to light emission enhancement of dipole emitters in slab waveguides, mediated by plasmonic lattices. We benchmark the array scanning method against a reciprocity-based approach to find that the calculated radiative rate enhancement in k-space below the light cone shows excellent agreement. Secondly, we apply our method to study absorption-enhancement in thin-film solar cells mediated by periodic Ag nanoparticle arrays. Lastly, we study the emission distribution in k-space of a coupled waveguide-lattice system. In particular, we explore the dark mode excitation on the plasmonic lattice using the so-called Array Scanning Method. Our method could be useful for simulating a broad range of complex nanophotonic structures, i.e., metasurfaces, plasmon-enhanced light emitting systems and photovoltaics.
15 pages, 4 figure
References in corpus (8)
- A Perfect Metamaterial Absorber
- Strong coupling between surface plasmon polaritons and emitters
- Tailor the functionalities of metasurfaces: From perfect absorption to phase modulation
- From weak to strong coupling of localized surface plasmons to guided modes in a luminescent slab
- Wavevector Selective Metasurfaces and Tunnel Vision Filters
- Probing the electrodynamic local density of states with magnetoelectric point scatterers
- Backaction in metasurface etalons
- Elimination of polarization degeneracy in circularly symmetric bianisotropic waveguides: a decoupled case
Cited by in corpus (11)
- Minireview on Disordered Optical Metasurfaces
- Multi-resonant high-Q plasmonic metasurfaces
- Coupled electric and magnetic dipole formulation for planar arrays of dipolar particles: metasurfaces with various electric and/or magnetic meta-atoms per unit cell
- Nanoparticle lattices with bases: Fourier modal method and dipole approximation
- Multipole analysis of substrate-supported dielectric nanoresonator arrays with T-matrix method
- Controlling nanoantenna polarizability through backaction via a single cavity mode
- Lattice Sums Accommodating Multiple Sublattices for Solutions of the Helmholtz Equation in Two and Three Dimensions
- Theory of light reflection and transmission by a plasmonic nanocomposite slab: Emergence of broadband perfect absorption
- Thickness-independent narrow resonance in a stack of two plasmonic lattices
- Finite element based Green's function integral equation for modelling light scattering
- Optical orientation of excitons in hybrid metal-semiconductor nanostructures