2018-2022 RESEARCH PROGRAM - UNITE MIXTE INTERNATIONALE GEORGIA TECH-CNRS, UMI2958 - Georgia Tech's global
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TABLE OF CONTENTS ABOUT THE UMI EXECUTIVE SUMMARY………………………………………………………………………….................................. 4 ORGANIZATIONAL CHART………………………………………………………………………................................ 7 UMI STAFF……………….……………………………………………………………........................................... 8 SCIENTIFIC PROGRAM A. NONLINEAR OPTICS A.1 NONLINEAR DYNAMICS IN PHOTONICS................................................................................... 12 A.2 THZ SCIENCE AND TECHNOLOGY............................................................................................ 14 B. SMART MATERIALS B.1 MATERIALS AND NANOSTRUCTURES FOR PHOTONICS AND ELECTRONICS........................................ 18 B.2 MATERIALS BY DESIGN AND ADVANCED MANUFACTURING.......................................................... 20 B.3 MULTI-SCALE NON-DESTRUCTIVE EVALUATION OF MATERIALS.................................................... 22 C. COMPUTER SCIENCE C.1 NETWORK INFORMATION SYSTEMS......................................................................................... 24 C.2 ROBOTIC FOR ENVIRONMENT ASSESSMENT AND MONITORING..................................................... 25 C.3 SYSTEM DESIGN AND INTEGRATION.......................................................................................... 27 C.4 SYSTEM OF SYSTEM EXPLORATION AND ASSESSMENT.................................................................. 29 3
o Network information systems, robotics Executive summary for environmental assessment and monitoring, and system design and The UMI was created with an agreement integration. between Georgia Tech and CNRS for the years 2006 to 2009. Extensive efforts were made • Leverage opportunities arising from: during this first period to build laboratory o Institut Lafayette, a platform for facilities, to purchase and to install state-of-the- innovation and technology transfer in art equipment, to hire researchers and PhD optoelectronics combining both high-level students and to initiate research programs in applied research and commercialization secure networks and smart materials. services, In the second agreement than spanned 2010- o ISITE Lorraine Université d’Excellence, 2013 the UMI extended its research program to which aims to develop a leading global secure networks with the creation of the “Smart engineering university, with a strong Home” with CentraleSupelec. It extended its emphasis on technological research and research activity in the UMI GT/Atlanta site. It education through research. LUE will substantially increased its external grants provide, over a long period, an annual through public research programs at national, flow of several million euros dedicated to European and international levels as well as the development of the academic site as a increased contracts with industrials. It achieved European and international reference on high visibility through its research publications Global Engineering. Georgia Tech and conference presentations. It actively Lorraine is one of the eight partners of contributed to the creation of the Lafayette this program. Institute—a platform for technology transfer. o CEA TECH, which is the CEA’s (the French Atomic Energy and Alternative Energy In the third contract of 2014-2017, we have Commission) technology research unit. achieved many things in our research projects CEA Tech has opened a branch office in and have made major contributions to local, the Grand Est region, located in Metz, next national and international research programs. to Georgia Tech Lorraine. The regional We have continued to improve our physical offices are intended to play a key role in research facilities, and have established France’s strategy to boost industrial significant alliances with academic and competitiveness through high added industrial partners. We have played a leadership value and enhanced product quality. Their role in building a bridge for faculty researchers mission is to develop local research and student exchanges between France and programs that round out existing Atlanta. We have also played a leading role in programs and that meet the unique needs the creation of the Institut Lafayette, a platform of locally-anchored industries for technology transfer and innovation in the area of optoelectronic devices. o LIA Atlas Morocco, (2017-2021), “Associated Trans-Mediterranean Abdallah Ougazzaden led the three first Laboratories for Applications in Solar contracts successfully. The next agreement of Energy,” is a formal structured the UMI will see a change in leadership. Jean international laboratory collaboration Paul Salvestrini, Professor at Georgia Tech created by CNRS, Georgia Tech, and Lorraine will succeed him. Their common vision Moroccan education (MESRSFC) and for the next 5 years, 2018-2022, is that UMI will: research (CNRST) entities for international collaborations. Partners are • Focus on research areas with recognized the UMI, Université Mohammed V, and the expertise and leadership in: Université Internationale de Rabat. This o Nonlinear dynamics in photonics and agreement has a plan for collaborative terahertz science and technology research in renewable energy. This lab o Materials and nanostructures for will allow for scientific synergies in photonics and electronics, materials by photovoltaics, energy efficiency, and design and advanced manufacturing, and provides resources for the exchange of multi-scale non-destructive evaluation of students and researchers, and a platform materials for building joint projects funded by companies and by public sources. 4 4
o Open Lab PSA Peugeot Citroën France applications of these dynamics have been and Morocco was created in January 2015 investigated. During the 2018-2022 term, we with an agreement between PSA, Georgia plan to leverage the potential of the acquired Tech, Institut Lafayette, and 7 other equipment and know-how to unfold the origins universities on the subject of sustainable of dynamical behaviors in diode lasers of various mobility for Africa. This laboratory kinds. Deep understanding of the dynamics will provides an additional link between the help us develop cutting-edge applications in the UMI and PSA, and the opportunity to field of photonic information processing. The collaborate with Moroccan researchers in expertise of Prof. Damien Rontani, Dr. Yanne the sustainability area. Chembo, and Prof. M. Bloch will help us achieve our goals. • Reinforce strategic areas: o Grow UMI presence in Atlanta, notably as Looking forward to 2018-2022, changes have described with the growth of the UMI been made to the previous Project A-2, led by Atlanta Mirror Lab in project C1, Paul Voss, will be discontinued to allow Prof. “Network Information Systems”. Voss to devote almost all of his research time to subprojects B-1 and B-2, where he has been o Partnership with European research involved in the design and modeling of centers. The UMI will continue to semiconductor devices for Project B-1 and B-2. strengthen its European network. This change will lend additional scientific o Education through research. strength to Project B, and is consistent with Approximately 700 students pass through opportunities in semiconductor fabrication GTL per year, and this is planned to made available by the start of Institut Lafayette. increase to 1000 per year by 2020. The majority of these students are Atlanta- Disruptive technologies in materials, based undergraduate students. In the characterizations and device 2013-2017 UMI agreement, over 50 undergrad students have participated in applications UMI re search proje cts. We plan to Development of synergies between experiments increase student participation in research and simulations for accurate prediction of to 120 in the 2018-2022 period, while microstructure evolution and development of formally adopting site-appropriate data-driven models will be the major objectives versions of leading Georgia Tech in project B2 “Material by Design and Advanced experiential learning programs such as Manufacturing”. Mohammed Cherkaoui and Invention Lab, Ti:Ger, VIP, etc. Laurent Capolungo are responsible for most of • Build critical size: the achievements in former project B2 “Material by Design” have left Georgia Tech and the UMI. o Hire more researchers and engineers. The At this time Etienne Patoor is the only ME UMI will do its utmost to create permanent faculty working on this topic. His permanent researcher positions through accomplishment in analysis and modeling of the CNRS, Georgia Tech, or other UMI martensitic phase transformation at different partners. We will also seek to increase lengthscale and his strong relations with partner the number of researchers and engineers laboratory LEM3 and also with FEMTO-ST are paid for by research contracts. very important for the new research program. The evolution compared to the previous contract In addition, the hiring of new permanent faculty in each research area is summarized below. in ME is a priority. The Woodruff School of Mechanical Engineering has open a faculty Nonlinear optics: enabling photonic position for GTL, several candidates have been interviewed, the process is now coming close to technology its conclusion and a new faculty having strong Project A (Nonlinear optics) will continue to background in the development of data-driven have a strong emphasis in nonlinear dynamics. models is supposed to join GTL in 2017. During the 2014-2017 term, a state-of-the art laboratory for the analysis of multi-GHz optical nonlinear dynamics has been built and several 5 5
Emerging areas in computer sciences The computer-related activities within the UMI are expected to continue to expand in the direction of secure networks and robotics for natural environments. Research on cognitive systems, mostly from CentraleSupelec faculties, will join a new team at Loria with a strong focus on cognitive sciences and bio-inspired solutions. By integrating GeorgiaTech researchers from the Aerospace System Design Lab, the computational activities will expand in the direction of computer-aided integration and design for complex systems and systems of systems. The Aerospace Systems Design Lab (ASDL), within GeorgiaTech Aerospace department, is a research laboratory that focuses on complex system design and analysis. ASDL has been the leading group for conceptual system design and integration, including systems of systems design, for the past 25 years, with European industry partners such as Airbus, Dassault System or Safran. ASDL at GTL will build itself to become a multi-disciplinary, conceptual design research facility that is home to academic faculty, research faculty and post-docs, graduate students, and undergraduate students. Dr. Dimitri Mavris, Regents professor in the Aerospace Engineering department at Georgia Tech’s Atlanta campus, will serve as the lead of the research laboratory. One or two Atlanta research faculty members will be present at GTL every semester and the ASDL staff in Atlanta will support the ASDL integration at GTL. The nature of the research conducted by ASDL at GTL will be mostly computational; therefore, even though it originates from the aerospace department in Atlanta, this activity will initially be considered below the Computer Science umbrella and take advantage of existing computational resources within the UMI. 6 6
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