Two-component, ab initio potential energy surface for CO2—H2O, extension to the hydrate clathrate, CO2@(H2O) 20, and VSCF/VCI vibrational analyses of both QK Wang, JM Bowman The Journal of Chemical Physics 147 (16), 2017 | 32 | 2017 |
Cross-platform comparison of arbitrary quantum states D Zhu, ZP Cian, C Noel, A Risinger, D Biswas, L Egan, Y Zhu, AM Green, ... Nature communications 13 (1), 6620, 2022 | 29 | 2022 |
Resource-Optimized Fermionic Local-Hamiltonian Simulation on Quantum Computer for Quantum Chemistry Q Wang, M Li, C Monroe, Y Nam arXiv preprint arXiv:2004.04151, 2020 | 28 | 2020 |
Interactive protocols for classically-verifiable quantum advantage D Zhu, GD Kahanamoku-Meyer, L Lewis, C Noel, O Katz, B Harraz, ... arXiv preprint arXiv:2112.05156, 2021 | 20 | 2021 |
Phase transition in magic with random quantum circuits P Niroula, CD White, Q Wang, S Johri, D Zhu, C Monroe, C Noel, ... arXiv preprint arXiv:2304.10481, 2023 | 18 | 2023 |
Cross-platform comparison of arbitrary quantum computations D Zhu, ZP Cian, C Noel, A Risinger, D Biswas, L Egan, Y Zhu, AM Green, ... arXiv preprint arXiv:2107.11387, 2021 | 13 | 2021 |
Phase transition in magic with random quantum circuits (2023) P Niroula, CD White, Q Wang, S Johri, D Zhu, C Monroe, C Noel, ... arXiv preprint arXiv:2304.10481, 0 | 10 | |
Ever more optimized simulations of fermionic systems on a quantum computer Q Wang, ZP Cian, M Li, IL Markov, Y Nam 2023 60th ACM/IEEE Design Automation Conference (DAC), 1-6, 2023 | 6 | 2023 |
Predissociation dynamics of the HCl–(H2O) 3 tetramer: An experimental and theoretical investigation K Zuraski, QK Wang, D Kwasniewski, JM Bowman, H Reisler The Journal of Chemical Physics 148 (20), 2018 | 5 | 2018 |
Demonstration of Interactive Protocols for Classically-Verifiable Quantum Advantage D Zhu, C Noel, A Risinger, L Egan, D Biswas, Q Wang, Y Nam, G Meyer, ... Bulletin of the American Physical Society, 2021 | 3 | 2021 |
Experimental implementation of an efficient test of quantumness L Lewis, D Zhu, A Gheorghiu, C Noel, O Katz, B Harraz, Q Wang, ... Physical Review A 109 (1), 012610, 2024 | 2 | 2024 |
Methods and apparatuses for resource-optimized fermionic local simulation on quantum computer for quantum chemistry Q Wang, M Li, NAM Yunseong US Patent App. 17/177,813, 2021 | 2 | 2021 |
Observation of the symmetry-protected signature of 3-body interactions LA Zhukas, Q Wang, O Katz, C Monroe, I Marvian arXiv preprint arXiv:2408.10475, 2024 | 1 | 2024 |
Enhancing the electron pair approximation with measurements on trapped-ion quantum computers L Zhao, Q Wang, JJ Goings, K Shin, W Kyoung, S Noh, YM Rhee, K Kim npj Quantum Information 10 (1), 76, 2024 | 1 | 2024 |
Demonstration of a CAFQA-bootstrapped Variational Quantum Eigensolver on a Trapped-Ion Quantum Computer Q Wang, L Zhukas, Q Miao, AS Dalvi, PJ Love, C Monroe, FT Chong, ... arXiv preprint arXiv:2408.06482, 2024 | 1 | 2024 |
Cross-Platform Comparison of Arbitrary Quantum Computations ZP Cian, D Zhu, C Noel, A Risinger, D Biswas, L Egan, Y Zhu, A Green, ... | 1 | 2021 |
Experimental observation of symmetry-protected signatures of N-body interactions L Zhukas, Q Wang, O Katz, I Marvian, C Monroe Bulletin of the American Physical Society, 2024 | | 2024 |
Methods and apparatuses for resource-optimized fermionic local simulation on quantum computer for quantum chemistry Q Wang, M Li, NAM Yunseong US Patent App. 18/411,709, 2024 | | 2024 |
Methods and apparatuses for resource-optimized fermionic local simulation on quantum computer for quantum chemistry Q Wang, M Li, NAM Yunseong US Patent App. 18/148,670, 2023 | | 2023 |
Efficient quantum simulation with quantum information compression and multiple fermion-to-qubit basis transformations Q Wang, NAM Yunseong US Patent App. 17/863,787, 2023 | | 2023 |