Dr. James E. Toney
Senior Lecturer at The Ohio State University
SPIE Involvement:
Author | Instructor
Websites:
Publications (13)

SPIE Journal Paper | 13 June 2019
OE, Vol. 58, Issue 08, 082420, (June 2019) https://doi.org/10.1117/12.10.1117/1.OE.58.8.082420
KEYWORDS: Waveguides, Polarization, Electrodes, Electro optics, Crystals, Electro optical modeling, Diffusion, Birefringence, Lithium niobate, Zinc oxide

Proceedings Article | 1 March 2016 Paper
James Toney, Andrea Pollick, Jason Retz, Vincent Stenger, Jay DeLombard, Sri Sriram
Proceedings Volume 9750, 975008 (2016) https://doi.org/10.1117/12.2210999
KEYWORDS: Waveguides, Lithium niobate, Polarization control, Polarization, Zinc oxide, Integrated optics, Nonlinear optics, Waveguide modes, Finite element methods, Electro optics, Electrodes, Electro optical modeling, Diffusion, Crystals

Proceedings Article | 27 March 2013 Paper
Proceedings Volume 8624, 86240I (2013) https://doi.org/10.1117/12.2004623
KEYWORDS: Lithium niobate, Electro optics, Electrodes, Semiconducting wafers, Modulators, Crystals, Ions, Beam steering, RF photonics, Prisms

Proceedings Article | 5 February 2013 Paper
James Toney, Vincent Stenger, James Busch, Peter Pontius, Michael Clabough, Andrea Pollick, Sri Sriram
Proceedings Volume 8647, 86470H (2013) https://doi.org/10.1117/12.2005369
KEYWORDS: Electrodes, Waveguides, Lithium niobate, Modulators, Electrooptic modulators, Finite element methods, RF photonics, Signal processing, Filtering (signal processing), Electro optics

Proceedings Article | 24 October 2012 Paper
James Toney, Michael Shnider, Neil Smith, Peter Pontius, James Busch, Vincent Stenger, Andrea Pollick, Sri Sriram
Proceedings Volume 8497, 849709 (2012) https://doi.org/10.1117/12.927472
KEYWORDS: Switches, Crystals, Electro optics, Thin films, Photonic crystals, Lithium niobate, Lithium, Photonic crystal devices, Electroluminescence, Ions

Showing 5 of 13 publications
Course Instructor
SC1163: Lithium Niobate Devices and Applications
This course explains the underlying physics, device structures, fabrication technology and applications of devices based on the linear electro-optic and second-order nonlinear optical effects in lithium niobate. Practical calculations using modern modeling and simulation tools will be emphasized.
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