Sergey S. Sarkisov,1 Eric K. Williams,1 Michael J. Curley,1 Cydale C. Smith,1 Dariush Ila,1 David B. Poker,2 Dale K. Hensley,2 Curtis E. Banks,3 Benjamin G. Penn3
1Alabama A&M Univ. (United States) 2Oak Ridge National Lab. (United States) 3NASA Marshall Space Flight Ctr. (United States)
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We present the results of analysis of microstructural and optical properties of composite nonlinear optical waveguides made by ion implantation of LiNbO3 with MeV ions of silver. Light guiding properties were studied by the prism coupling method, and nonlinear optical susceptibility was characterized using the Z-scan method. Special attention was paid to the influence of a host material and heat treatment on light guiding, optical absorption, and third order susceptibility.
Sergey S. Sarkisov,Eric K. Williams,Michael J. Curley,Cydale C. Smith,Dariush Ila,David B. Poker,Dale K. Hensley,Curtis E. Banks, andBenjamin G. Penn
"Nonlinear optical waveguides based on metal nanocluster composites produced by ion beam implantation", Proc. SPIE 3283, Physics and Simulation of Optoelectronic Devices VI, (7 July 1998); https://doi.org/10.1117/12.316648
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Sergey S. Sarkisov, Eric K. Williams, Michael J. Curley, Cydale C. Smith, Dariush Ila, David B. Poker, Dale K. Hensley, Curtis E. Banks, Benjamin G. Penn, "Nonlinear optical waveguides based on metal nanocluster composites produced by ion beam implantation," Proc. SPIE 3283, Physics and Simulation of Optoelectronic Devices VI, (7 July 1998); https://doi.org/10.1117/12.316648