James Daniel Whitfield
Affiliations: | Physics | Dartmouth College, Hanover, NH, United States |
Area:
Quantum algorithm, electronic structure, physics of computingWebsite:
https://physics.dartmouth.edu/people/james-daniel-whitfieldGoogle:
"James Daniel Whitfield" OR "James D Whitfield"Bio:
https://scholar.google.com/citations?user=XLMWVzQAAAAJ&hl=en
https://www.proquest.com/openview/491077bfbda5fa90d6fc7a365220dff7/1
Parents
Sign in to add mentorAlán Aspuru-Guzik | grad student | 2011 | Harvard (Chemistry Tree) | |
(At the intersection of quantum computing and quantum chemistry.) |
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Publications
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Wang W, Whitfield JD. (2023) Basis Set Generation and Optimization in the NISQ Era with Quiqbox.jl. Journal of Chemical Theory and Computation |
Gulania S, Whitfield JD. (2021) Limitations of Hartree-Fock with quantum resources. The Journal of Chemical Physics. 154: 044112 |
Yang J, Brown J, Whitfield JD. (2021) A Comparison of Three Ways to Measure Time-Dependent Densities With Quantum Simulators Frontiers in Physics. 9 |
Aiello CD, Awschalom DD, Bernien H, et al. (2021) Achieving a quantum smart workforce Quantum Science and Technology. 6: 030501 |
Setia K, Chen R, Rice JE, et al. (2020) Reducing qubit requirements for quantum simulation using molecular point group symmetries. Journal of Chemical Theory and Computation |
Brown J, Yang J, Whitfield JD. (2020) Solver for the electronic V-representation problem of time-dependent density functional theory. Journal of Chemical Theory and Computation |
Sun Q, Zhang X, Banerjee S, et al. (2020) Recent developments in the PySCF program package. The Journal of Chemical Physics. 153: 024109 |
Setia K, Bravyi S, Mezzacapo A, et al. (2019) Superfast encodings for fermionic quantum simulation Physical Review Research. 1 |
Setia K, Whitfield JD. (2018) Bravyi-Kitaev Superfast simulation of electronic structure on a quantum computer. The Journal of Chemical Physics. 148: 164104 |
Zhu G, Subaşı Y, Whitfield JD, et al. (2018) Hardware-efficient fermionic simulation with a cavity–QED system Npj Quantum Information. 4: 16 |