William Doolittle

William Doolittle
alan.doolittle@ece.gatech.edu
ECE Profile Page

During my research career I have observed “new” material systems develop and offer promise of wondrous device performance improvements over the current state of the art. Many of these promises have been kept, resulting in numerous new devices that could never have been dreamed of just a few short years ago. Other promises have not been fulfilled, due, in part, to a lack of understanding of the key limitations of these new material systems. Regardless of the material in question, one fact remains true: Without a detailed understanding of the electrical and optical interaction of electronic and photonic “particles” with the material and defect environment around them, novel device development is clearly impeded. It is not just a silicon world! Modern electronic/optoelectronic device designs (even silicon based devices) utilize many diverse materials, including mature dielectrics such as silicon dioxide/nitrides/oxynitrides, immature ferroelectric oxides, silicides, metal alloys, and new semiconductor compounds. Key to the continued progress of electronic devices is the continued development of a detailed understanding of the interaction of these materials and the defects and limitations inherent to each material system. It is my commitment to insure that new devices are continuously produced based on complex mixed family material systems.

Joseph M. Pettit Professor, School of Electrical and Computer Engineering
Phone
404.894.9884
Office
MIRC 209
Additional Research

Compund semiconductors, optical materials, III-V semiconductor devices

Google Scholar
https://scholar.google.com/citations?hl=en&user=YeyRLWAAAAAJ&view_op=list_works&sortby=pubdate
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Ankur Singh

Ankur Singh headshot
ankur.singh@gatech.edu
Singh Lab Website

Prof. Singh has a joint appointment with the Wallace H. Coulter Department of Biomedical Engineering at Georgia Tech and Emory University.

Prof. Singh started at Cornell University as an Assistant Professor in 2013 and was promoted with tenure to Associate Professor with joint appointments in the Mechanical Engineering and Biomedical Engineering. At Cornell, he served as the Associate Director of the NIH T32 training grant on Immuno-engineering, executive council of the Center for Immunology, and the Cornell (Ithaca) – Weill Cornell Medicine (NYC) Academic Integration initiative. Prior to joining Cornell, he completed his postdoctoral training in cell mechanobiology, cell-matrix interactions, and stem cell engineering at Georgia Tech in Mechanical Engineering.

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Mike Leamy

Mike Leamy
michael.leamy@me.gatech.edu
Website
Woodruff Professor, Woodruff School of Mechanical Engineering
Director of Graduate Studies, Woodruff School of Mechanical Engineering
Phone
(404) 385.2828
Additional Research

Electric Vehicles; Acoustics and Dynamics; computational mechanics; Multiscale Modeling; Nanostructured Materials; Metamaterials

University, College, and School/Department
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https://scholar.google.com/citations?hl=en&user=F5wzOkgAAAAJ&view_op=list_works&sortby=pubdate
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