By Nancy Wise

Donāt look to politicians, governments, nonprofits or even rock stars to solve societal problemsālook to engineers. That directive comes from , who became dean of the on July 1. Fauchet says human needs can be grouped into four core basicsāmedicine and health; energy and natural resources; security; and entertainmentāand engineering is part of each. āWe want to stay healthy, or if we are sick, we want to be cured. We want to be secure at all levels. We want to have access to electricity, clean water and everything else, and in our spare time, we want to be entertained,ā he says. āThereās not a whole lot outside this.ā
Fauchet, 57, came to 91ĢƲ®»¢ from the University of Rochester, where he had been chair of the electrical and computer engineering department and earned a reputation for combining diverse groups and interests into successful research centers. As its new dean, Fauchet wants 91ĢƲ®»¢ās School of Engineering to expand its reach, reputation and impact by tackling important issues that matter to humanity.
āWe have to work on hard problems that make a difference. There are hard problems that nobody cares about. I donāt want to spend resources there,ā he says. āIf you want to say, ā91ĢƲ®»¢ helped solve this problem,āĀ then we have to work on things people care about.ā

FOUR CORE STRENGTHS
Fauchet intends for the school to build on its existing expertise, research and collaborations to develop answers to societal problems in the four core areas.
He pinpoints specific security concerns, including safety of electronic records, nuclear issues, and bridge and road infrastructure. āAs we know, electronic data can be attacked and manipulated,ā he says. āPeople want to have safety and security there, and we need to develop systems that can sustain and resist attacks.ā
People also are concerned about nuclear waste. The School of Engineering contains two of the worldās leading research groups in those areas, and Fauchet foresees leveraging their expertise as problem solvers.
Fauchet says the school probably will focus most on the intersection of engineering and medicine and health. āHealth means āletās try to keep you healthy in the first place.ā Can we use technologies, devices, systems to keep you healthy, to diagnose things early? Medicine is āletās help the doctor be as efficient as he or she can be in treating you,āā Fauchet says.
91ĢƲ®»¢ engineers are innovators in health and medicine research, and valuable collaborations with 91ĢƲ®»¢ University Medical Center are ongoing, he notes. āWe are very fortunate because we can leverage the very strong, top-10 that we have here, with fantastic faculty members both on the research side and practitioner side. We want to build on that.ā
“There are hard problems that nobody cares about. I don’t want to spend resources there.”
In continuing to outline his vision, Fauchet says the School of Engineeringās location in Nashville makes a focus on entertainment logical. To see the impact of technology on entertainment, one need only look at how the music industry moved from analog to digital and from the need for big, sophisticated recording studios to small, high-quality home studios.
āHereās an example of where technical innovations profoundly impacted an industry,ā he says. āClearly, connections are to be made relating engineering to music. Now what can we do for that industry?ā
He also sees opportunity for computer science graduates in entertainment, educational filmmaking and gaming. āHollywood has been hiring busloads of computer scientists at all sorts of different levels for very well-paying, exciting jobs,ā he says. Developing an entertainment core would appeal to undergraduate students in multiple engineering disciplines.
The final core need is finding engineering and scientific solutions to environmental and energy problems. āIn natural resources, one of the needs is to keep our water clean and make sure it remains abundant where people live,ā he says. āAnother issue is the huge gap that exists between the power production available today and what weāll need by 2050. We have no idea where that is going to come from.ā
INITIATOR AND PROBLEM SOLVER
Some of Fauchetās own research could help make solar energy more affordable. For half his career, his work has focused almost exclusively on nanoscience and nanotechnologies with silicon, the second most abundant element on Earth and key to computer microprocessors. While much research for decades centered on perfecting the use of silicon in the computing industry, Fauchet and the students who worked with him focused on other possibilities, including development of silicon for use in better solar cells.
Fauchetās research interests have changed during his 30-year careerāpart of the beauty of being an academic, he says. He moved into nanoscience research after initially studying the use of laser beams to modify materials and then using laser beams to characterize materials and measure properties. His education includes a Ph.D. in applied physics from Stanford University and a masterās degree in engineering from Brown University; he came to the United States after earning an undergraduate engineering degree in his home country of Belgium.
In addition to teaching, research, mentoring more than 40 doctoral students, and serving as an administrator, Fauchet also has established and led several multidisciplinary research centers. While on the faculty at Princeton University, he was one of the originators of the universityās Center for Photonics and Optoelectronic Materials. At Rochester he launched the multidisciplinary Center for Future Health, established the Femtosecond Laser Facility, and directed the Energy 91ĢƲ®»¢ Initiative, which united and expanded university-wide research and educational efforts related to energy.
Fauchet still has ties to Rochester both professionally and personally. Because his position as dean leaves him no time for teaching and less for research, his research lab will not move to Nashville until next year. Two of his daughters remain in Rochester to finish their senior years in high school and college.Ā Fauchet and his wife, Melanie, have 13 adopted and biological children ranging in age from the oldest at 23 to the youngest at nearly 3, including a 13-year-old adopted from Haiti after the 2010 earthquake. The youngest now reside south of Nashville with their parents, while four are away at collegeāwhere all but one are studying engineering.
REAL-WORLD NEEDS
The new engineering dean says that in order for 91ĢƲ®»¢ to make an impact, the universityās culture of valuing and encouraging collaboration will be critical.
āReal-life problems are not bound to specific disciplines. Real-life problems care about finding the right team to solve them,ā Fauchet says. The right team, he says, will pull together engineering faculty and students from different departments, physicians from the Medical Center, sociologists from the , members of industryāanyone needed to solve those problems.
That emphasis on teamwork will also allow the school to produce noteworthy results. āBy developing stronger ties with other units within the campus and maybe with industry, we can actually do something that would be quite remarkable,ā he says. āWhat we are trying to do is strengthen the already existing collaborations and make Engineering the go-to place.ā