David G. Tempel, Ph.D.

Affiliations: 
2012 Physics Harvard University, Cambridge, MA, United States 
Area:
energy transfer in photosynthetic complexes, spectroscopy of molecules in nanoscale environments
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"David Tempel"
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Alán Aspuru-Guzik grad student 2012 Harvard
 (Time-Dependent Density Functional Theory for Open Quantum Systems and Quantum Computation.)
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Publications

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Laguna HG, Sagar RP, Tempel DG, et al. (2015) The role of interparticle interaction and environmental coupling in a two-particle open quantum system. Physical Chemistry Chemical Physics : Pccp
Whitfield JD, Yung MH, Tempel DG, et al. (2014) Computational complexity of time-dependent density functional theory New Journal of Physics. 16
Tempel DG, Aspuru-Guzik A. (2014) The Kitaev-Feynman clock for open quantum systems New Journal of Physics. 16
Yung MH, Whitfield JD, Boixo S, et al. (2014) Introduction to quantum algorithms for physics and chemistry Advances in Chemical Physics. 154: 67-106
Parkhill JA, Markovich T, Tempel DG, et al. (2012) A correlated-polaron electronic propagator: open electronic dynamics beyond the Born-Oppenheimer approximation. The Journal of Chemical Physics. 137: 22A547
Tempel DG, Aspuru-Guzik A. (2012) Quantum computing without wavefunctions: time-dependent density functional theory for universal quantum computation. Scientific Reports. 2: 391
Parkhill JA, Tempel DG, Aspuru-Guzik A. (2012) Exciton coherence lifetimes from electronic structure. The Journal of Chemical Physics. 136: 104510
Tempel DG, Yuen-Zhou J, Aspuru-Guzik A. (2012) Open Quantum Systems: Density Matrix Formalism and Applications Lecture Notes in Physics. 837: 211-229
Tempel DG, Watson MA, Olivares-Amaya R, et al. (2011) Time-dependent density functional theory of open quantum systems in the linear-response regime. The Journal of Chemical Physics. 134: 074116
Tempel DG, Aspuru-Guzik A. (2011) Relaxation and dephasing in open quantum systems time-dependent density functional theory: Properties of exact functionals from an exactly-solvable model system Chemical Physics. 391: 130-142
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