arXiv · 2603.05795
Rovibrational energy levels of H$_2$O by quantum computing
Abstract
We calculate rovibrational energy levels of H$_2$O using a trapped-ion quantum computer. We first derive the qubit form of Watson's Hamiltonian, including the rovibrational coupling terms. In a second step, we employ a variant of the quantum-selected configuration-interaction method to calculate rovibrational energy levels. A truncated form of the qubit Hamiltonian is used to generate correlated rovibrational wave functions on the quantum computer by time evolution, and a basis set is selected by sampling from the measured probability distribution. The rovibrational energy levels are obtained by constructing a Hamiltonian matrix using the selected basis set, and diagonalizing the matrix using a classical computer. We show that an accuracy of a few $hc$ cm$^{-1}$ can be achieved for low-lying rovibrational energy levels.
Explore related subjects
Keep this discovery
Erik Lötstedt, Tamás Szidarovszky. 2026-03-06. Rovibrational energy levels of H$_2$O by quantum computing. https://doi.org/10.1063/5.0333947
Cite the original work for its findings. Save a collection to share your selection of sources.