Combined shape and topology optimization yields manufacturable InP photonic crystal cavities with theoretical mode volumes below 0.1 (λ/2n_air)^3, and fabricated devices show reproducible resonances and hints of coupling to colloidal quantum dots.
Confocal polarization tomography of dielectric nanocavities
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abstract
We employ polarization tomography to characterize the modal properties of a dielectric nanocavity with sub-wavelength mode confinement. Our analysis of reflection spectra shows that the Fano-lineshape depends strongly on the polarization in a confocal configuration, and that the lineshape can be transformed into a Lorentzian-like peak for a certain polarization. For this polarization setting, the background is almost fully suppressed in a finite range of frequencies. This enables us to identify another resonance that has not yet been experimentally reported for these nanocavities. Lastly, we use symmetry-forbidden polarizations and show that, surprisingly, the modal resonance features of the system remain visible.
fields
physics.optics 1years
2025 1verdicts
CONDITIONAL 1representative citing papers
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Fabrication and characterization of shape- and topology-optimized optical cavities with deep sub-wavelength confinement for interfacing with colloidal quantum dots
Combined shape and topology optimization yields manufacturable InP photonic crystal cavities with theoretical mode volumes below 0.1 (λ/2n_air)^3, and fabricated devices show reproducible resonances and hints of coupling to colloidal quantum dots.