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* [https://journals.aps.org/prx/abstract/10.1103/PhysRevX.11.021062 entanglement in solid-state materials or between qubits], | * [https://journals.aps.org/prx/abstract/10.1103/PhysRevX.11.021062 entanglement in solid-state materials or between qubits], | ||
* [https://wiki.physics.udel.edu/wiki_qttg/images/4/48/Tddft_jefimenko_nipt.pdf ultrafast-light-driven quantum materials and their heterostructures]. | * [https://wiki.physics.udel.edu/wiki_qttg/images/4/48/Tddft_jefimenko_nipt.pdf ultrafast-light-driven quantum materials and their heterostructures]. | ||
The principal tools that we employ daily include [[Fast Facts about NEGF|nonequilibrium Green functions]] | The principal tools that we employ daily include analytical Schwinger-Keldysh nonequilibrium quantum field theory and computational [[Fast Facts about NEGF|nonequilibrium Green functions]], time-dependent density functional theory, time-dependent density matrix renormalization group, quantum-classical methods, as well as their combination with high performance scientific computing. Our research is supported by the U.S. [http://www.nsf.gov/index.jsp National Science Foundation] and the [http://science.energy.gov/bes/epscor/ 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> |
Revision as of 18:13, 9 April 2024
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