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University of Southampton

Modification of glasses and optical waveguides using high electric fields

Abstract

dc:description.abstract

This thesis describes work done towards establishing efficient and reproducible second harmonic generation in thermally poled novel high-index bismuth-borate glass structures. According to the rectification model, glass with higher χ(3) values than silica would permit χ(2) to scale up proportionally, for a given frozen-in electric field strength. The fundamental research on poling induced nonlinearity has been extended to investigate several compositions of Bi<sub>2</sub>O<sub>3</sub>ZnOB<sub>2</sub>O<sub>3</sub> glass systems, whose refractive index is measured to increase with the Bi<sub>2</sub>O<sub>3</sub> content. Intrinsic third-order optical nonlinearity χ(3) up to thirty times higher than silica have been measured in bismuth-based compounds, and even larger values are potentially achievable.<br/><br/>In this thesis, a reliable procedure to induce large and stable second order nonlinear coefficient χ(2) in bismuthate glasses has been established along with the understanding towards efficient generation of second harmonic power in waveguiding layers. Characterization methods to determine the nonlinear formation dynamics and resolve nonlinear thickness and profile has been optimized to quantify the magnitude and distribution of second order nonlinearities in thermally poled bismuthate glasses. The development of a new poling procedure, where the applied voltage is varied during the cooling phase, instead of being kept constant, has allowed a record value of χ(2) = 2.3 pm/V in 12.5% Bi<sub>2</sub>O<sub>3</sub> bulk samples to be achieved. The control of nonlinear region evolution gained by establishing the innovative time-varying voltage poling procedure has led to the first demonstration of second-order nonlinearity value as high as 2 pm/V induced by thermal poling in bismuthate sputtered slab waveguides.<br/><br/>These achievements opened new investigations towards realizing efficient monolithic structures leading to high performance active devices based on poled bismuth-based glass waveguides. In particular, an all-glass electro-optic modulator and a frequency doubler have been targeted, based on sputtering and femtosecond laser direct writing, respectively.

Degree

thesis:*
Name dc:type.qualificationname
Ph.D.
Level dc:type.qualificationlevel
doctoral
Grantor dc:publisher.institution
University of Southampton
Year dc:date.issued
2007

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Mezzapesa, Francesco Paolo
Advisors dc:contributor.advisor
  • Kazansky, Peter
  • Wilkinson, James

Chain of custody

source
Harvested from
University of Southampton
Base URL
eprints.soton.ac.uk/cgi/oai2
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
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citation

Mezzapesa, Francesco Paolo. Modification of glasses and optical waveguides using high electric fields. doctoral thesis, University of Southampton, 2007.