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Poled Polymers and Their Applications to SHG and EO Devices Book

Poled Polymers and Their Applications to SHG and EO Devices
Poled Polymers and Their Applications to SHG and EO Devices, Poled polymers doped with nonlinear optically active chromophores combine the large second order nonlinearity of the dopant dye molecules with the optical quality of the polymer. The material design flexibility afforded to doped polymers makes them attrac, Poled Polymers and Their Applications to SHG and EO Devices has a rating of 4 stars
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Poled Polymers and Their Applications to SHG and EO Devices, Poled polymers doped with nonlinear optically active chromophores combine the large second order nonlinearity of the dopant dye molecules with the optical quality of the polymer. The material design flexibility afforded to doped polymers makes them attrac, Poled Polymers and Their Applications to SHG and EO Devices
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  • Poled Polymers and Their Applications to SHG and EO Devices
  • Written by author S. Miyata
  • Published by Taylor & Francis, Inc., October 1997
  • Poled polymers doped with nonlinear optically active chromophores combine the large second order nonlinearity of the dopant dye molecules with the optical quality of the polymer. The material design flexibility afforded to doped polymers makes them attrac
  • Poled polymers doped with nonlinear optically active chromophores combine the large second order nonlinearity of the dopant dye molecules with the optical quality of the polymer. The material design flexibility afforded to doped polymers makes them attrac
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Introduction to the Series
Preface
1Poled Polymers and their Application in Second Harmonic Generation and Electro-Optic Modulation Devices1
2Thermally Stable Second-Order Nonlinear Optical Polymers47
3New Polyamide Main-Chain Polymers based on 2',5'-Diamino-4-(dimethylamino)-4'-nitrostilbene (DDANS)63
4Multilayer [actual symbol not reproducible] NLO Films Prepared by the LBK Process from Novel Accordion Polymers77
4aTwo-Dimensional Charge-Transfer Molecules for Poled Polymer Applications87
5Stable Second-Order Nonlinear Optical Properties of Organic Compounds in Silica Matrices99
5aEffects of Drawing and Poling on Nonlinear Optical Coefficients of Poled Polymers109
6Molecular Design for Stabilization of Nonlinear Optical Dipole Moments in Polymeric Materials131
7Polymer Networks based on Organosoluble Polyimides Exhibiting Stable Second-Order Nonlinear Optical Properties151
8Relaxation Processes in Nonlinear Optical Side-Chain Polyimide Polymers165
9Relaxation and Aging in Poled Polymer Films179
10Design and Fabrication of Electro-Optic Polymer Waveguide Devices195
11Large Stable Second-Order Coefficients and Waveguide Device Application in Poled Silica Film Doped with Azo Dye209
12Novel Guest-Host Type Polymer Films for Stable and Large Second-Order Nonlinearity and Waveguide Property223
13Effect of UV Exposure on Poled Organic-Inorganic Films for Channel Waveguide Fabrication231
14High Performance Chromophores and Polymers for Electro-Optic Applications237
15Frequency Doubling with Nonlinear Optical Polymers251
16SHG of Organic Photochromes in Polymer Matrix: Photo-assisted Poling and Photo-switching257
Index275


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Poled Polymers and Their Applications to SHG and EO Devices, Poled polymers doped with nonlinear optically active chromophores combine the large second order nonlinearity of the dopant dye molecules with the optical quality of the polymer. The material design flexibility afforded to doped polymers makes them attrac, Poled Polymers and Their Applications to SHG and EO Devices

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Poled Polymers and Their Applications to SHG and EO Devices, Poled polymers doped with nonlinear optically active chromophores combine the large second order nonlinearity of the dopant dye molecules with the optical quality of the polymer. The material design flexibility afforded to doped polymers makes them attrac, Poled Polymers and Their Applications to SHG and EO Devices

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Poled Polymers and Their Applications to SHG and EO Devices, Poled polymers doped with nonlinear optically active chromophores combine the large second order nonlinearity of the dopant dye molecules with the optical quality of the polymer. The material design flexibility afforded to doped polymers makes them attrac, Poled Polymers and Their Applications to SHG and EO Devices

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