Bulletin of the American Physical Society
2023 APS March Meeting
Volume 68, Number 3
Las Vegas, Nevada (March 5-10)
Virtual (March 20-22); Time Zone: Pacific Time
Session F64: Quantum Simulation II: Estimating Ground States
8:00 AM–11:00 AM,
Tuesday, March 7, 2023
Room: Room 415
Sponsoring
Unit:
DQI
Chair: Yanzhu Chen, Virginia Tech
Abstract: F64.00001 : Accurate quantum chemistry calculations on near-term quantum computers enabled by the transcorrelated method*
8:00 AM–8:12 AM
Presenter:
Werner Dobrautz
(Chalmers University of Technology)
Authors:
Werner Dobrautz
(Chalmers University of Technology)
Igor O Sokolov
(PASQAL)
Martin Rahm
(Chalmers Univ of Tech)
Ali Alavi
(Max Planck Institute for Solid State Research)
Ivano Tavernelli
(IBM Research - Zurich)
In this talk I will answer these questions by presenting how to enable accurate and efficient quantum chemistry calculations on NISQ devices for relevant chemical and physical problems. This is achieved by the use of an exact explicitly correlated method in the form of the transcorrelated (TC) method.
TC methods provide an efficient way of partially transferring the description of electronic correlations from the ground state wavefunction directly into the underlying Hamiltonian. This reduces the necessary quantum resources two-fold:
(1) The TC Hamiltonian possesses a more compact ground state wavefunction, which facilitates electronic structure calculations and thus requires shallower quantum circuits.
(2) For ab initio quantum chemistry problems the TC method reduces the required number of qubits, by allowing to obtain highly accurate results with small basis sets.
I will present results on the Hubbard model and small chemical test systems, like the hydrogen molecule and lithium hydride, where results within chemical accuracy to the complete basis set limit and experimental results are within reach with only 6 to 12 qubits.
*This project has received funding from the European Union's Horizon Europe research and innovation programme under the Marie Sklodowska-Curie grant agreement No. 101062864
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