VAPOR is a variational quantum algorithm that finds RG fixed points for naively discretized operators in a symmetry-restricted SU(2) Yang-Mills toy model by decomposing into Pauli strings.
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2 Pith papers cite this work, alongside 13 external citations. Polarity classification is still indexing.
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Chemical properties and symmetries, not variational energy, should guide UHF trial selection for ph-AFQMC on iron-sulfur clusters, yielding accurate energies despite suboptimal sampling and bias compensation.
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Implementing Hamiltonian Renormalization Group Flow on Quantum Computers with VAPOR
VAPOR is a variational quantum algorithm that finds RG fixed points for naively discretized operators in a symmetry-restricted SU(2) Yang-Mills toy model by decomposing into Pauli strings.
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Selecting optimal unrestricted Hartree-Fock trial wavefunctions for phaseless auxiliary-field quantum Monte Carlo: Accuracy and limitations in modeling three iron-sulfur clusters
Chemical properties and symmetries, not variational energy, should guide UHF trial selection for ph-AFQMC on iron-sulfur clusters, yielding accurate energies despite suboptimal sampling and bias compensation.