Monolithic Photorefractive Organic Glasses with Large Coupling Gain and Strong Beam Fanning (original) (raw)

Photorefractive properties of an unsensitized polymer composite based on a dicyanostyrene derivative as nonlinear optical chromophore

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Applied Physics Letters, 2005

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Observation of the photorefractive effect in a polymer

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The Relevance of the Collaborative Effect in Determining the Performances of Photorefractive Polymer Materials

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J. Campbell Scott

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Accounts of Chemical Research, 1996

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Stabilization of the response time in photorefractive polymers

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Applied Physics Letters, 2000

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Nonlinear Optical Transmission Processes and Organic Photorefractive Materials

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2002

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High T[sub g] photorefractive polymers: Influence of the chromophores’ β tensor

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Effect of the chromophore donor group and ferrocene doping on the dynamic range, gain, and phase shift in photorefractive polymers

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Recent advances in photorefractive polymers

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Spontaneous Oscillation and Self-Pumped Phase Conjugation in a Photorefractive Polymer Optical Amplifier

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Video-rate compatible photorefractive polymers with stable dynamic properties under continuous operation

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Mechanisms for the reciprocity failure in photorefractive polymers

Pierre-Alexandre Blanche

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Photoconducting polymers for photorefractive nonlinear optics

Klaus Meerholz

1994

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High-performance photorefractive polymer operating at 975nm

Guoqiang Li

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Influence of the sensitizer reduction potential on the sensitivity of photorefractive polymer composites

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J. Mater. Chem., 2010

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Photoconductivity and grating response time of a photorefractive polymer

Martin Liphardt

Journal of the Optical Society of America B, 1994

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High-Performance Photorefractive Polymers

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Science, 1994

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Reorientation of chromophores in dispersive photorefractive polymers

David Binks

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Photorefractive properties and applications of polymer composites and fully functionalized polymethacrylates

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Materials Science and Engineering: C, 2001

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Poly(silane)-based high-mobility photorefractive polymers

J. Campbell Scott

Journal of the Optical Society of America B, 1993

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Photoconducting Polymers for Photorefractive 3D Display Applications

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1064-nm Sensitive Organic Photorefractive Composites

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Influence of the Glass-Transition Temperature and the Chromophore Content on the Grating Buildup Dynamics of poly(N-vinylcarbazole)-based Photorefractive Polymers

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Photoconductivity and charge-carrier photogeneration in photorefractive polymers

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SPIE Proceedings, 2002

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Copoly[6,6′-bis(9-(2-ethylhexyl)carbazole-3-yl)/thieno-(2,5- b)thiophenylidenevinylene]-based photorefractive composite: A comparative study on conjugated and non-conjugated polymer systems

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Synthesis and nonlinear optical properties of chromophores for photorefractive polymer materials

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Photorefractive polymer composites using a trinitrofluorenone–C60 dyad with a conformationally flexible linker as photosensitizer

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Polymers and Light: Fundamentals and Technical Applications By Wolfram Schnabel (Hahn-Meitner-Institut, Berlin, Germany). Wiley-VCH Verlag GmbH & Co. KGaA: Weinheim. 2007. xiv + 382 pp. $190. ISBN 978-3-527-31866-7

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Bidimensional chromophores for photorefractive polymers with working wavelength in the near IR

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High-performance photorefractive polymer composites doped with 2-piperidino-5-thienylmalononitrile chromophore

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Photorefractive polymers with sub-millisecond response time

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