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Second harmonic generation in ionica...
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Sudduth, Mark.
Second harmonic generation in ionically self-assembled organic thin films.
Record Type:
Electronic resources : Monograph/item
Title/Author:
Second harmonic generation in ionically self-assembled organic thin films./
Author:
Sudduth, Mark.
Description:
150 p.
Notes:
Source: Masters Abstracts International, Volume: 43-01, page: 0228.
Contained By:
Masters Abstracts International43-01.
Subject:
Physics, Optics. -
Online resource:
Download fulltext (下載全文)
ISBN:
049626060X
Second harmonic generation in ionically self-assembled organic thin films.
Sudduth, Mark.
Second harmonic generation in ionically self-assembled organic thin films.
- 150 p.
Source: Masters Abstracts International, Volume: 43-01, page: 0228.
Thesis (M.S.)--The University of Texas at Arlington, 2004.
Maker fringe patterns of polymeric thin films containing an organic ionic pyrylium salt dye are presented. Waveguides were fabricated by spin-coating and by the ionic self-assembled monolayer (ISAM) technique. Poling was not required for either technique as the material was naturally self-aligning. The theory from Herman and Hayden was used to model the Maker fringe data. The ISAM technique is shown to produce optically robust nonlinear optical waveguides with flexible design parameters. Furthermore, the pyrylium salt dye exhibits low absorption in the neighborhood of 450 nm, thus providing a blue window for frequency conversion applications.
ISBN: 049626060XSubjects--Topical Terms:
1000005523
Physics, Optics.
Second harmonic generation in ionically self-assembled organic thin films.
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Second harmonic generation in ionically self-assembled organic thin films.
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150 p.
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Source: Masters Abstracts International, Volume: 43-01, page: 0228.
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Supervisor: Truman D. Black.
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Thesis (M.S.)--The University of Texas at Arlington, 2004.
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Maker fringe patterns of polymeric thin films containing an organic ionic pyrylium salt dye are presented. Waveguides were fabricated by spin-coating and by the ionic self-assembled monolayer (ISAM) technique. Poling was not required for either technique as the material was naturally self-aligning. The theory from Herman and Hayden was used to model the Maker fringe data. The ISAM technique is shown to produce optically robust nonlinear optical waveguides with flexible design parameters. Furthermore, the pyrylium salt dye exhibits low absorption in the neighborhood of 450 nm, thus providing a blue window for frequency conversion applications.
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School code: 2502.
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Download fulltext (下載全文)
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