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*[http://web.physics.udel.edu/research/nanoscale-physics/nanoscale-thermoelectrics nanoscale thermoelectric devices], | *[http://web.physics.udel.edu/research/nanoscale-physics/nanoscale-thermoelectrics nanoscale thermoelectric devices], | ||
*[http://www.physics.udel.edu/~bnikolic/PDF/jj_review.pdf strongly correlated heterostructures]. | *[http://www.physics.udel.edu/~bnikolic/PDF/jj_review.pdf strongly correlated heterostructures]. | ||
We are also working on the development of new theoretical and computational formalisms, often involving massively parallel codes, which are required to study quantum many-body systems far from equilibrium. The principal tools that we employ daily include nonequilibrium Green function theory, density functional theory, and dynamical mean field theory. Our research is supported by the [http://www.nsf.gov/awardsearch/showAward.do?AwardNumber=0725566 National Science Foundation] and the [http://science.energy.gov/bes/epscor/ U.S. Department of Energy]. | We are also working on the development of new theoretical and computational formalisms, often involving massively parallel codes, which are required to study quantum many-body systems far from equilibrium. The principal tools that we employ daily include [Fast facts about NEGF|nonequilibrium Green function theory], density functional theory, and dynamical mean field theory. Our research is supported by the [http://www.nsf.gov/awardsearch/showAward.do?AwardNumber=0725566 National Science Foundation] and the [http://science.energy.gov/bes/epscor/ U.S. Department of Energy]. | ||
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! <h2 style="margin:0;background:#FFE680;font-size:120%;font-weight:bold;border:1px solid #BFAC60;text-align:left;color:#000;padding:0.2em 0.4em;">Research Highlights</h2> | ! <h2 style="margin:0;background:#FFE680;font-size:120%;font-weight:bold;border:1px solid #BFAC60;text-align:left;color:#000;padding:0.2em 0.4em;">Research Highlights</h2> |
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