Probing local density of states near the diffraction limit using nanowaveguide coupled cathode luminescence
arXiv:2106.06301 · doi:10.1103/PhysRevA.104.L031504
Abstract
The photonic local density of states (PLDOS) determines the light matter interaction strength in nanophotonic devices. For standard dielectric devices, the PLDOS is fundamentally limited by diffraction, but its precise dependence on the size parameter of a device can be non-trivial. Here, we measure the PLDOS dependence on the size parameter in a waveguide using a new technique - nanowaveguide coupled cathode luminescence (CL). We observe that depending on the position within the waveguide cross-section, the effective diffraction limit of the PLDOS varies, and the PLDOS peak shape changes. Our results are of fundamental importance for optimizing coupling to nanophotonic devices, and also open new avenues for spectroscopy based on evanescently coupled CL.
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References in corpus (5)
- Electron Beam Spectroscopy for Nanophotonics
- Cavity QED on a nanofiber using a composite photonic crystal cavity
- A heat-and-pull rig for fiber taper fabrication
- Highly efficient coupling of photons from nanoemitters into single-mode optical fibers
- Spatially resolved quantum nano-optics of single photons using an electron microscope