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Simulation of Many-Body Hamiltonians using Perturbation Theory with Bounded-Strength Interactions
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Simulation of Many-Body Hamiltonians using Perturbation Theory with Bounded-Strength Interactions
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We show how to map a given n-qubit target Hamiltonian with bounded-strength k-body interactions onto a simulator Hamiltonian with two-body interactions, such that the ground-state energy of the target and the simulator Hamiltonians are the same up to an extensive error O(epsilon n) for arbitrary small epsilon. The strength of interactions in the simulator Hamiltonian depends on epsilon and k but does not depend on n. We accomplish this reduction using a new way of deriving an effective low-energy Hamiltonian which relies on the Schrieffer-Wolff transformation of many-body physics.
Forward citations
Cited by 1 Pith paper
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The Complexity of Local Stoquastic Hamiltonians on 2D Lattices
The 2-local stoquastic Hamiltonian problem on 2D square qubit lattices is StoqMA-complete.
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