We have designed and experimentally probed different types of planar photonic crystal cavities aimed at optimizing the far-field emission pattern. We systematically investigate the interplay between achieving the highest possible quality (Q) factor and maximizing the in- and out-coupling efficiency into a narrow emission cone. Cavities operate at telecommunications wavelengths, i.e. around ~1.55 microns, and are realized in silicon membranes. A strong modification of the far-field emission pattern, and therefore a substantial increase of the coupling efficiency in the vertical direction, is obtained by properly modifying the holes around L3, L5 and L7 type PhC cavities, as we predict theoretically and show experimentally. An optimal compromise yielding simultaneously a high Q-factor and a large coupling to the fundamental cavity mode is found for a L7-type cavity with a measured Q~62000, whose resonant scattering efficiency is improved by about two orders of magnitude with respect to the unmodified structure. These results are especially useful for prospective applications in light emitting devices, such as nano-lasers or single-photon sources, in which vertical in- and out-coupling of the electromagnetic field is necessarily required.

Planar photonic crystal cavities with far-field optimization for high coupling efficiency and quality factor

GALLI, MATTEO;ANDREANI, LUCIO;GERACE, DARIO
2010-01-01

Abstract

We have designed and experimentally probed different types of planar photonic crystal cavities aimed at optimizing the far-field emission pattern. We systematically investigate the interplay between achieving the highest possible quality (Q) factor and maximizing the in- and out-coupling efficiency into a narrow emission cone. Cavities operate at telecommunications wavelengths, i.e. around ~1.55 microns, and are realized in silicon membranes. A strong modification of the far-field emission pattern, and therefore a substantial increase of the coupling efficiency in the vertical direction, is obtained by properly modifying the holes around L3, L5 and L7 type PhC cavities, as we predict theoretically and show experimentally. An optimal compromise yielding simultaneously a high Q-factor and a large coupling to the fundamental cavity mode is found for a L7-type cavity with a measured Q~62000, whose resonant scattering efficiency is improved by about two orders of magnitude with respect to the unmodified structure. These results are especially useful for prospective applications in light emitting devices, such as nano-lasers or single-photon sources, in which vertical in- and out-coupling of the electromagnetic field is necessarily required.
2010
The Physics category includes resources of a broad, general nature that contain materials from all areas of physics, The category also includes resources specifically concerned with the following physics sub-fields: mathematical physics, particle and nuclear physics, physics of fluids and plasmas, quantum physics, and theoretical physics.
Sì, ma tipo non specificato
Inglese
Internazionale
ELETTRONICO
18
15
16064
16073
This work has been selected for the July issue of Spotlight on Optics, which advertises only 2 papers per month selected among all the OSA (Optical Society of America) journal publications. More info can be found at http://www.opticsinfobase.org/spotlight/
photonic crystals; nanophotonics; light emission
http://www.opticsinfobase.org/oe/abstract.cfm?uri=oe-18-15-16064
7
info:eu-repo/semantics/article
262
Portalupi, Simone; Galli, Matteo; Reardon, C.; Krauss, T. F.; O'Faolain, L.; Andreani, Lucio; Gerace, Dario
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/219203
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