arXiv · 2509.17982
How an Equi-ensemble Description Systematically Outperforms the Weighted-ensemble Variational Quantum Eigensolver
Abstract
Calculating excited states in chemistry is crucial to provide insight into photoinduced molecular behavior beyond the ground state, enabling innovations in spectroscopy, material sciences, and drug design. While several approaches have been developed to compute excited-state properties, finding the best ratio between computational cost and accuracy remains challenging. The advent of quantum computers brings new perspectives, with the development of quantum algorithms that promise an advantage over classical ones. Most of these new algorithms are inspired from previous classical ones, but with different pros and cons. In this Letter, we focus on the generalization of the variational principle for many-body excited-states that led to the ensemble variational quantum eigensolver (VQE). We compare the performance of two ensemble VQE approaches, the equi-ensemble and weighted-ensemble ones, and conclude that the equi-ensemble is the way to go.
Explore related subjects
Keep this discovery
Akilan Rajamani, Martin Beseda, Benjamin Lasorne, Bruno Senjean. 2025-09-22. How an Equi-ensemble Description Systematically Outperforms the Weighted-ensemble Variational Quantum Eigensolver. https://doi.org/10.1021/acs.jpca.6c01225
Cite the original work for its findings. Save a collection to share your selection of sources.