arXiv · 2603.12045
Quantum Matrix-Element Estimators for Spin-Coupled Generalized Valence Bond Wavefunctions (SCGVB)
Abstract
Valence-bond wavefunctions such as spin-coupled generalized valence bond (SCGVB) provide compact and chemically interpretable descriptions of strong correlation, but their nonorthogonal determinant structure makes quantum evaluation of overlaps and Hamiltonian matrix elements difficult. Here we introduce an ancilla-free, measurement-driven framework that reformulates these quantities as vacuum expectation values of Pauli-string operators, enabling evaluation with shallow circuits, local Clifford rotations, and computational-basis measurements, without controlled operations. We validate the method for H$_4$ along a dissociation pathway and for a 70-determinant C$_2$ active-valence benchmark. The reconstructed matrices agree with the classical L{\"o}wdin-based reference, while Chirgwin-Coulson weights remain chemically consistent. These results establish the proposed estimators as a low-depth, circuit-compatible formulation for evaluating SCGVB matrix elements, while making no claim of quantum computational advantage.
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Bruna Gabrielly. 2026-03-12. Quantum Matrix-Element Estimators for Spin-Coupled Generalized Valence Bond Wavefunctions (SCGVB). https://arxiv.org/abs/2603.12045
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