Kabbes Undergraduate Research Award, 2002 and 2003
First place senior design project - UIC
SKILLS, TECHNOLOGIES & PROJECTS
optoelectronic device design: design and simulation using Matlab/Sentaurus
device fabrication: material growth and deposition, lithography, various characterization tools, bonding, liftoff, and other various process techniques
device testing: built and use optical testing apparatus to test devices optically and electrically using data acquisition software coded in Matlab
chip design: power estimation, chip core layout, front to back end planning
project organization: e.g. Gantt charts
web design: research group and conference webpages, e.g. http://www.stanford.edu/group/dabmgroup
PUBLICATIONS
Si-Ge Surface-normal Asymmetric Fabry-Perot Quantum-confined Stark Effect Electroabsorption Modulator, E. H. Edwards, R. M. Audet, Y. Rong, S. A. Claussen, R. K. Schaevitz, E. Tasyürek, S. Ren, Ted I. Kamins, O. I. Dosunmu, M. S. Ünlu, J. S. Harris, and D. A. B. Miller, Proc. IEEE Summer Topicals, Playa del Carmen, Mexico, TuD2.4 (2010)
Surface-Normal Asymmetric Fabry-Perot Quantum-Confined Stark Effect Electroabsorption Modulator, E. H. Edwards, R. M. Audet, S. A. Claussen, R. K. Schaevitz, E. Tasyürek, S. Ren, O. I. Dosunmu, M. S. Ünlü, and D. A. B. Miller, CLEO/QELS, CTuA5, San Jose, CA (May 2010)
Si-Ge Surface-normal Asymmetric Fabry-Perot Quantum-confined Stark Effect Electroabsorption Modulator, E. H. Edwards, R. M. Audet, Y. Rong, S. A. Claussen, R. K. Schaevitz, E. Tasyürek, S. Ren, Ted I. Kamins, O. I. Dosunmu, M. S. Ünlu, J. S. Harris, and D. A. B. Miller, IEEE Annual Photonics Society Meeting November 2010, Paper WW2
Simple Electroabsorption Model for Silicon-Germanium/Germanium Quantum Well Devices, R. K. Schaevitz, J. E. Roth, E. H. Edwards, R. M. Audet, S. A. Claussen, E. Tasyurek, S. Ren, Y. Rong, J. S. Harris and D. A. B. Miller, Proc. IEEE Summer Topicals TuD4.2 (2010)
Spot Size Effects in Asymmetric Fabry-Perot Electroabsorption Modulators, R. M. Audet, E. H. Edwards, S. A. Claussen, S. Ren, R. K. Schaevitz, E. Tasyurek and D. A. B. Miller, Proc. IEEE Summer Topicals TuD4.5 (2010)
Emission from Nanocrystalline Graphite (NCG) Ranging from Room Temperature to 350°C, H. Busta, E. Edwards, R. Lajos, A. Feinerman, A. Rakhimov, V. Samaradov, B. Seleznev and N. Suetin, Technical Digest of the 15th International Vacuum Nanoelectronics Conference, 2002