ACS Photonics · 2020 · 37 citations · 41 references
PhotonicsEngineeringSlab WaveguidesPhysicsSolar Conversion EfficiencyApplied PhysicsPlanar Waveguide SensorGuided-wave OpticPhotonic Integrated CircuitPlasmon-enhanced PhotovoltaicsPhotonic DeviceOptoelectronicsLuminescent Solar ConcentratorsPhotonic CrystalsNanophotonicsPhotonic Crystal Waveguides
Luminescent solar concentrators are currently limited in their potential concentration factor and solar conversion efficiency by the inherent escape cone losses present in conventional planar dielectric waveguides. We demonstrate that photonic crystal slab waveguides tailored for luminescent solar concentrator applications can exhibit >90% light trapping efficiency. This is achieved by use of quantum dot luminophores embedded within the waveguide that absorb light at photon energies corresponding to photonic crystal leaky modes that couple to incoming sunlight. The luminophores then emit at lower photon energies into photonic crystal bound modes that enable highly efficient light trapping in slab waveguides of wavelength-scale thickness. Photonic crystal waveguides thus nearly eliminate escape cone losses, and overcome the performance limitations of previously proposed wavelength-selective dielectric multilayer filters. We describe designs for hole-array and rod-array photonic crystals comprised of hydrogenated amorphous silicon carbide using CdSe/CdS quantum dots. Our analysis suggests that photonic crystal waveguide luminescent solar concentrators using these materials these can achieve light trapping efficiency above 92% and a concentration factor as high as 100.
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High-Q photonic nanocavity in a two-dimensional photonic crystal
Yoshihiro Akahane, Takashi Asano, Bong-Shik Song et al. · Nature · 2003 · 2.7K citations
Controlling the dynamics of spontaneous emission from quantum dots by photonic crystals
Peter Lodahl, A. Floris van Driel, Ivan S. Nikolaev et al. · Nature · 2004 · 1.3K citations · Full text
Guided modes in photonic crystal slabs
Steven G. Johnson, Shanhui Fan, Pierre R. Villeneuve et al. · Physical review. B, Condensed matter · 1999 · 1.1K citations
Periodic Dielectric Structures, Photonics, Optical Materials +13