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Spectroscopic assessment of rare-earth activated planar waveguides and microcavities

Academic Article
Publication Date:
2005
abstract:
This paper deals with glass-based photonic structures, used to control and modify the optical and spectroscopic properties of rare earth ions. The spectroscopic assessment of sol-gel-derived planar waveguides and 1D photonic band gap structures is reported. The spectroscopic, optical, and structural properties of planar waveguides with (100 - x)SiO2-xHfO 2-yErO1.5 with y = 0.3, 0.01; and x = 10, 20, 30, 40 have been investigated by photoluminescence and Raman spectroscopy. The radiative quantum efficiency of the 4I13/2 metastable state of Er3+ ions is between 84 and 88% depending on the Si/Hf molar ratio. The sol-gel-derived one-dimensional cavity was realized by a Eu 3+-activated dielectric layer placed between distributed Bragg reflectors (DBRs).
Iris type:
01.01 Articolo in rivista
Keywords:
sol-gel method; planar waveguides; microcavities; Bragg-reflectors; luminescence
List of contributors:
Jestin, Yoann; Mattarelli, Maurizio; Zampedri, Luca; Chiappini, Andrea; Ferrari, Maurizio; Pelli, Stefano; NUNZI CONTI, Gualtiero; Chiasera, Alessandro; Righini, Giancarlo
Authors of the University:
CHIAPPINI ANDREA
CHIASERA ALESSANDRO
NUNZI CONTI GUALTIERO
PELLI STEFANO
RIGHINI GIANCARLO
Handle:
https://iris.cnr.it/handle/20.500.14243/169674
Published in:
APPLIED SURFACE SCIENCE
Journal
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