1
program role
20
collaborators
2009–2026
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
1 Talk
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| Exploiting Contextuality in Variational Quantum Eigensolvers | QIP 2021 | regular | William Kirby, Andrew Tranter |
Abstract We describe how contextuality may be used to advantage in variational quantum eigensolvers. Contextuality is a characteristic feature of quantum mechanics, and identifying contextuality in quantum algorithms provides a means for distinguishing them from their classical counterparts. We first describe how contextuality may be identified in variational quantum eigensolvers (VQEs), which are a leading algorithm for noisy intermediate-scale quantum computers. We then show how to construct a classical phase-space model for any noncontextual Hamiltonian, which provides a classical simulation algorithm for noncontextual VQE and allows us to prove that the noncontextual Hamiltonian problem is only NP-complete, rather than QMA-complete. Finally, we describe an approximation method called contextual subspace VQE that permits us to partition a general Hamiltonian into a noncontextual part and a contextual part, and estimate its ground state energy using a technique that combines classical simulation of the noncontextual part with quantum simulation of the contextual part. By using more quantum resources (in qubits and simulated terms of the Hamiltonian), we can increase the accuracy of the approximation. We tested contextual subspace VQE on electronic structure Hamiltonians, and found that to reach chemical accuracy in most cases it requires fewer qubits and simulated terms than standard VQE. |
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7 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Quantum Advantage in Resource Estimation | QIP 2026 | ▸William Simon |
| Zero noise extrapolation for a small diatomic molecule on a trapped-ion quantum computer | QIP 2023 | Oliver Maupin, Ashlyn Burch, Christopher Yale, Susan Clark, Brandon Ruzic, Andrew Landahl, Kenneth Rudinger, Antonio Russo, Daniel Lobser, Andrew Baczewski |
| Classical Simulation of Noncontextual Pauli Hamiltonians | TQC 2020 | William Kirby |
| Measurement Contextuality and Planck's Constant | QIP 2018 | Lucas Kocia |
| Space-optimal quantum algorithms for simulating many-fermionic systems in quantum chemistry | QIP 2014 | Borzumehr Toloui |
| Adiabatic Quantum Simulation of Quantum Chemistry | QIP 2014 | Ryan Babbush, Alán Aspuru-Guzik |
| Quantum simulation of chemical dynamics. | QIP 2009 | Ivan Kassal, Stephen Jordan, Masoud Mosheni, Alán Aspuru-Guzik |
Committee service
| Conference | Committee | Position | Title |
|---|---|---|---|
| QIP 2021 | program | member | — |
Collaborators
| Co-author | Joint talks |
|---|---|
| Alán Aspuru-Guzik | 2 |
| William Kirby | 2 |
| Andrew Baczewski | 1 |
| Andrew Landahl | 1 |
| Andrew Tranter | 1 |
| Antonio Russo | 1 |
| Ashlyn Burch | 1 |
| Borzumehr Toloui | 1 |
| Brandon Ruzic | 1 |
| Christopher Yale | 1 |
| Daniel Lobser | 1 |
| Ivan Kassal | 1 |
| Kenneth Rudinger | 1 |
| Lucas Kocia | 1 |
| Masoud Mosheni | 1 |
| Oliver Maupin | 1 |
| Ryan Babbush | 1 |
| Stephen Jordan | 1 |
| Susan Clark | 1 |
| William Simon | 1 |