arXiv · 2301.06453
A blueprint for a Digital-Analog Variational Quantum Eigensolver using Rydberg atom arrays
Abstract
We address the task of estimating the ground-state energy of Hamiltonians coming from chemistry. We study numerically the behavior of a digital-analog variational quantum eigensolver for the H2, LiH and BeH2 molecules, and we observe that one can estimate the energy to a few percent points of error leveraging on learning the atom register positions with respect to selected features of the molecular Hamiltonian and then an iterative pulse shaping optimization, where each step performs a derandomization energy estimation.
Explore related subjects
Keep this discovery
Antoine Michel, Sebastian Grijalva, Loïc Henriet, Christophe Domain, Antoine Browaeys. 2023-01-16. A blueprint for a Digital-Analog Variational Quantum Eigensolver using Rydberg atom arrays. https://doi.org/10.1103/physreva.107.042602
Cite the original work for its findings. Save a collection to share your selection of sources.