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Infrared Photorefractive Polymer Characterization System

Infrared Photorefractive Polymer Characterization System
Author: W. Moerner
Publisher:
Total Pages: 5
Release: 1998
Genre:
ISBN:

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A broad array of apparatus for fabricating and characterizing newly-developed photorefractive polymer materials has been purchased with the funds from this DURIP grant. While these pieces of equipment emphasize the infrared range of the spectrum, instruments have also been acquired which measure thermal and dielectric properties of this new and growing class of high-performance materials. A crucially important study of the trapping states in a major class of photorefractive polymers has already been completed, in which the concentration of the fullerene anion has been measured with a near-infrared spectrometer acquired through this grant. The concentration of fullerene anion correlates well with the all-important photorefractive trap density determined by two-beam-coupling experiments, proving that the anion is the primary trapping species. This information will allow careful optimization of future photorefractive polymer materials. At the same time, a full infrared-capable photorefractive polymer characterization system has been constructed, and this apparatus will be applied to understand and optimize photorefractive behavior in a wide array of new materials.


Fourier Transform Infrared Characterization of Polymers

Fourier Transform Infrared Characterization of Polymers
Author: H. Ishida
Publisher: Springer Science & Business Media
Total Pages: 447
Release: 2013-03-09
Genre: Science
ISBN: 1468477765

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This book contains the proceedings of the Symposium on FT-IR Characterization of Polymers, which was held under the auspices of the Division of Polymer Chemistry, American Chemical Society (ACS) during the annual ACS meeting in Philadelphia, August, 1984. The content of each paper has been substantially extended from the papers presented during the conference. Due to the accidental, irrecoverable loss of the entire contents of the book by the computer system used for editorial purposes, the publication of this book has been delayed more than one year over the initial scheduled date. It has been a continuous, frustrating experience for the editor as well as for the authors. An extended Murphy's law, -anything can go wrong goes multiply wrong- has been demonstrated in editor's office. It necessitated, otherwise unnecessary, repeated proof reading during which time the editor had valuable experience ~n familiarizing himself with each paper much more than usual. The papers in this book are state-of-the-art even after such a delay. It is the authors pride and integrity toward the quality of each paper that makes the value of this book long lasting, while responsibility of the loss of any timeliness rests at the editor's hand. For the purpose of official records, submission and acceptance dates must be stated. All papers had been submitted by September, 1984, and had been accepted for publication by November, 1984, after the critical review processes.


Visible and Near Infrared Sensitive Photorefractive Polymers for Holographic Display Applications

Visible and Near Infrared Sensitive Photorefractive Polymers for Holographic Display Applications
Author: Muhsin Eralp
Publisher:
Total Pages: 332
Release: 2007
Genre:
ISBN:

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This work presents recent advances in photorefractive polymer composites towards improved efficiency, speed, persistence of holograms and sensitivity at both visible and near infrared wavelengths. Besides the pure performance characteristics, a thin-device approach is presented to reduce operating voltage of these devices to practical levels and these materials are analyzed in both reflection and transmission geometries. The thin device operating at 1.3kV holds erasable, Bragg holograms with 80% efficiency in addition to its video-rate response time. The transition of hologram state from 'thick' to 'thin' is analyzed in detail. On the near IR portion of spectrum, new photorefractive polymer composites have been developed that enable high performance operation at 845nm and 975nm. Utilizing our novel photorefractive materials we demonstrate large diffraction efficiency in four-wave mixing experiments and video-rate response times. A major step towards achieving submillisecond response times is obtained through recording photorefractive gratings with individual nanosecond pulses at 532nm. At 4 mJ/cm2 illumination, a maximum diffraction efficiency of 56% has been obtained with a build-up time of only 300 microseconds (t1). This fast response enables applications in optical processing requiring frame rates of 100Hz or more. Due to the short duration of the writing pulses, the recording is insensitive to vibrations. Combining molecules that have different frontier orbital energies in a copolymer system and utilizing thermal fixing approach has led to long grating lifetimes of more than several hours. Later, in this dissertation, two low-glass-transition photorefractive polymer composites are investigated in reflection geometry. 60% is diffraction efficiency is observed in 105 micron thick devices of a PVK based composite. The reflection holograms are more sensitive to reading angle and slight birefringence due to the poling of chromophores has proven to cause a Bragg mismatch.


Novel Photorefractive and Electro-Optic Polymers-Rational Designs, Synthesis and Mechanism

Novel Photorefractive and Electro-Optic Polymers-Rational Designs, Synthesis and Mechanism
Author:
Publisher:
Total Pages: 0
Release: 1998
Genre:
ISBN:

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This report describes our effort in the past three years on synthesis and characterization of novel photorefractive polymer system. Two major systems were developed, one of which combined the ionic transition metal complexes and a conjugated polymer backbone bearing NLO chromophores to manifest large photorefractive effect. Another is a molecular material containing oligothiophene and a nonlinear optical (NLO) chromophore. A large net optical gain (>200/cm) at a zero electric field was observed in the metal containing system. In the molecular system, a net optical gain of 83/cm and a diffraction efficiency of nearly 40% were obtained in a film made from this molecule under an applied field of 706 kv/cm. A fast response time of for the grating formation, 42 ms under 616 kv/cm, was observed.


Durip

Durip
Author: Rigoberto Hernandez
Publisher:
Total Pages:
Release: 2005
Genre:
ISBN:

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Infrared Holography for Optical Communications

Infrared Holography for Optical Communications
Author: Pierpaolo Boffi
Publisher: Springer Science & Business Media
Total Pages: 199
Release: 2003
Genre: Computers
ISBN: 3540433147

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The aim of this book is to exploit the advantages of holographic technology, in order to implement optical devices for infrared fibre communication applications. It covers methods ranging from two-lambda to gated recording techniques.


Infrared and Raman Spectroscopy of Polymers

Infrared and Raman Spectroscopy of Polymers
Author: J. L. Koenig
Publisher: iSmithers Rapra Publishing
Total Pages: 152
Release: 2001
Genre: Science
ISBN: 1859572847

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Vibrational spectroscopy is advantageous as an analytical tool for polymers and comprises two complementary techniques: infrared (IR) and Raman spectroscopy. This report is an absorbing overview of how these methods can be employed to provide information about complex polymeric macromolecules with respect to composition, structure, conformation and intermolecular interactions. The review is supported by several hundred abstracts selected from the Polymer Library giving useful references for further reading.