Fabrication of channel waveguides in Er-doped tungsten-tellurite glasses was recently demonstrated. In order to get a deeper understanding of the process and to optimize the characteristics of the waveguides, we fabricated a set of planar waveguides, each of 7 mm × 7 mm lateral dimensions, in an Er-doped tellurite glass sample by implantation of 1.5 MeV nitrogen ions. Doses of the implanting ions ranged from 1 · 10 16 to 8 ·10 16 ions/cm 2. The samples were studied using interference phase contrast microscopy (Interphako), m-line spectroscopy and spectroscopic ellipsometry. The results show that a barrier layer of reduced refractive index was created around the range of the implanted ions at every dose. It is hoped that combination of the results obtained in these experiments with simulations for channel waveguides will make it possible to optimize ion-implanted fabrication of integrated optical components in this tellurite glass.

Nitrogen-ion-implanted planar optical waveguides in Er-doped tellurite glass: Fabrication and characterization

Ia;Berneschi;Pelli;Righini;
2008

Abstract

Fabrication of channel waveguides in Er-doped tungsten-tellurite glasses was recently demonstrated. In order to get a deeper understanding of the process and to optimize the characteristics of the waveguides, we fabricated a set of planar waveguides, each of 7 mm × 7 mm lateral dimensions, in an Er-doped tellurite glass sample by implantation of 1.5 MeV nitrogen ions. Doses of the implanting ions ranged from 1 · 10 16 to 8 ·10 16 ions/cm 2. The samples were studied using interference phase contrast microscopy (Interphako), m-line spectroscopy and spectroscopic ellipsometry. The results show that a barrier layer of reduced refractive index was created around the range of the implanted ions at every dose. It is hoped that combination of the results obtained in these experiments with simulations for channel waveguides will make it possible to optimize ion-implanted fabrication of integrated optical components in this tellurite glass.
2008
Inglese
Optical Components and Materials V
6890
9780819470652
http://www.scopus.com/inward/record.url?eid=2-s2.0-41149144093&partnerID=40&md5=e02afecfd08d098ebcd173f9272701a4
Computer simulation
Integrated optics
Ion implantation
Semiconducting glass
Spectroscopic ellipsometry
Interference phase contrast microscopy
Slab waveguides
Tellurite glass
Optical waveguides
cited By (since 1996)1; Conference of org.apache.xalan.xsltc.dom.DOMAdapter@34530a04 ; Conference Date: org.apache.xalan.xsltc.dom.DOMAdapter@37b6a772 Through org.apache.xalan.xsltc.dom.DOMAdapter@38ab49f1; Conference Code:71679
24
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Bányász, ; Righini, Giancarlo; Berneschi, Simone; Sb, ; Cacciari, ; Ib, ; Fried, ; Mc, ; Lohner, ; Tc, ; Nunziconti, ; Gb, D; Pászti, ; Fe, ; Pelli, S...espandi
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/19992
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