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    Taxonomy of integrable and ground-state solvable models: Jastrow wave functions on graphs and parent Hamiltonians

    Nilanjan Sasmal1,* and Adolfo del Campo1,2,†

    • *Contact author: nilanjan.sasmal@uni.lu
    • †Contact author: adolfo.delcampo@uni.lu

    Phys. Rev. B 113, 235151 – Published 24 June, 2026

    DOI: https://doi.org/10.1103/g7hk-tlq1

    Abstract

    We introduce a family of many-body systems of distinguishable continuous-variable particles in which interparticle interactions are set by the adjacency matrix of a graph. The ground-state wave function of such systems is of a generalized Jastrow form involving the product of pair-correlation functions over the edge set of the graph. These systems describe quantum fluids when the graph is complete, and the pair function has a well-defined permutation symmetry. In general, they provide the continuous-variable generalization of spin systems on graphs, with broken permutation symmetry. The corresponding parent Hamiltonian is shown to include (a) two-body interactions determined by the graph adjacency matrix and (b) three-body interactions over all possible 2-paths on the graph. Employing elements of graph theory, we chart the landscape of models, recovering known instances in the literature and providing numerous new examples of ground-state solvable models for which the system Hamiltonian, ground-state wave function, and corresponding energy eigenvalue are specified.

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