Dr. Clara E. Dimas
Assistant Professor at Khalifa Univ.
Profile Summary

Dr. Dimas's areas of expertise are light emitting devices based on nanostructures, microelectromechanical systems for adaptive optics and semiconductor processing. Prior to joining MIST, she conducted research at the Center for Optical Technologies on the design and fabrication of broadband quantum dot/dash light sources for interferometric sensing systems. In addition, she previously worked at a startup from the Boston University Photonics Center on the product research and development of micromirrors for biomedical imaging and free-space communications.

Dr. Dimas received her PhD and MS in Electrical Engineering (EE) from Lehigh University, and her BSE in EE from the University of Pennsylvania. She has contributed to 40 publications including refereed journals, conference proceedings, invited talks and a US patent.
Publications (10)

Proceedings Article | 24 February 2009 Paper
Proceedings Volume 7211, 72110X (2009) https://doi.org/10.1117/12.808571
KEYWORDS: Refractive index, Semiconductor lasers, Optical simulations, Laser damage threshold, Data modeling, Indium gallium arsenide, Quantum dots, Plasma, Continuous wave operation, Carrier dynamics

Proceedings Article | 18 February 2009 Paper
Proceedings Volume 7224, 72240S (2009) https://doi.org/10.1117/12.808567
KEYWORDS: Quantum wells, Semiconductor lasers, Annealing, Laser damage threshold, Nanostructures, Silica, Semiconductors, Internal quantum efficiency, Optoelectronic devices, Spectroscopy

Proceedings Article | 3 February 2009 Paper
Proceedings Volume 7230, 72300B (2009) https://doi.org/10.1117/12.809118
KEYWORDS: Optical coherence tomography, Semiconductor lasers, Coherence (optics), Light sources, Arsenic, Cladding, Superluminescent diodes, Gallium arsenide, Interferometers, Indium arsenide

Proceedings Article | 9 February 2007 Paper
Proceedings Volume 6475, 64751B (2007) https://doi.org/10.1117/12.700747
KEYWORDS: Antireflective coatings, Quantum wells, Optical amplifiers, Superluminescent diodes, Optical coherence tomography, Electrodes, Integrated optics, Light sources, Modulation, Continuous wave operation

Proceedings Article | 25 October 2005 Paper
Proceedings Volume 6013, 601304 (2005) https://doi.org/10.1117/12.630082
KEYWORDS: Quantum wells, Annealing, Diffusion, Nanostructures, Ion implantation, 3D modeling, Silicon, Gallium arsenide, Gallium, Dielectrics

Showing 5 of 10 publications
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