Resonant Reflection From Cylindrical Grating-Waveguide Under Holistic Excitation

Autor: O. Parriaux, Hugo Bruhier, Yves Jourlin, Stéphanie Reynaud, N. Crespo-Monteiro, Thomas Kämpfe, Isabelle Verrier, Colette Veillas, Erieta Katerina Koussi, M. A. Usuga Higuita
Přispěvatelé: Laboratoire Hubert Curien [Saint Etienne] (LHC), Université Jean Monnet [Saint-Étienne] (UJM)-Centre National de la Recherche Scientifique (CNRS)-Institut d'Optique Graduate School (IOGS), LABEX MANUTECH-SISE (ANR-10-LABX-0075)
Jazyk: angličtina
Rok vydání: 2020
Předmět:
Zdroj: IEEE Photonics Journal, Vol 12, Iss 2, Pp 1-11 (2020)
IEEE Photonics Journal
IEEE Photonics Journal, Institute of Electrical and Electronics Engineers (IEEE), 2020, pp.1-1. ⟨10.1109/JPHOT.2020.2966146⟩
ISSN: 1943-0655
DOI: 10.1109/JPHOT.2020.2966146⟩
Popis: International audience; The phenomenon of resonant reflection from a grating-coupled waveguide mode is conceptually, technologically, and experimentally transposed from a planar corrugated waveguide structure under plane wave excitation to a circularly symmetrical waveguide at the inner wall of a tube under cylindrical wave excitation. The mode coupling element is an azimuthally periodic wall corrugation having an integer number of lines parallel to the tube axis. The grating is defined by diffractive coordinate transform of a radial grating phase-mask transverse to the tube axis under axial beam exposure onto a photoresist-coated TiO 2 sol-gel wall-waveguide. The holistic excitation of a waveguide mode is achieved by transforming a broad spectrum, centered axial incident beam into a cylindrical wave by a centered, 90 o apex reflective cone. The expected resonantly reflected cylindrical wave at the mode-coupling wavelength is in turn transformed back into an axial beam by the cone. TE resonant reflection is demonstrated experimentally.
Databáze: OpenAIRE