Paper
1 December 1991 Organic electro-optic devices for optical interconnnection
George F. Lipscomb, Richard S. Lytel, Anthony J. Ticknor, Timothy E. Van Eck, Dexter G. Girton, Susan P. Ermer, John Francis Valley, John T. Kenney, Edward S. Binkley
Author Affiliations +
Abstract
The exceptional electro-optic properties of poled polymer films, coupled with the power and flexibility of thin film fabrication and photolithographic processing, may make possible a new class of integrated optic systems: photonic large scale integration (PLSI). PLSI systems are characterized by the hybrid integration of electronic and photonic devices, combining the processing power of VLSI with a dense, high bandwidth, photonic interconnection and switching network in a single, large format, package. In this paper, we describe the potential applications and benefits of PLSI and present a review of some of the relevant progress to date in electro-optic polymer materials and devices, including the demonstration of polymer switch based 100 Mbit/sec digital signal transmission for optical interconnection and a 20 GHz electro-optic polymer modulator.
© (1991) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
George F. Lipscomb, Richard S. Lytel, Anthony J. Ticknor, Timothy E. Van Eck, Dexter G. Girton, Susan P. Ermer, John Francis Valley, John T. Kenney, and Edward S. Binkley "Organic electro-optic devices for optical interconnnection", Proc. SPIE 1560, Nonlinear Optical Properties of Organic Materials IV, (1 December 1991); https://doi.org/10.1117/12.50736
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Cited by 3 scholarly publications.
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KEYWORDS
Polymers

Modulation

Optical interconnects

Electro optics

Logic

Electrodes

Modulators

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