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Quantum simulation of a three-body interaction Hamiltonian on an NMR quantum computer

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arxiv quant-ph/9908012 v1 pith:2AAJHJQ6 submitted 1999-08-03 quant-ph

classification quant-ph
keywords quantumhamiltoniancomputeraverageinteractionsimulatedsystemalanine
verification ladder T0 review T1 audit T2 compute T3 formal
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Extensions of average Hamiltonian theory to quantum computation permit the design of arbitrary Hamiltonians, allowing rotations throughout a large Hilbert space. In this way, the kinematics and dynamics of any quantum system may be simulated by a quantum computer. A basis mapping between the systems dictates the average Hamiltonian in the quantum computer needed to implement the desired Hamiltonian in the simulated system. The flexibility of the procedure is illustrated with NMR on 13-C labelled Alanine by creating the non-physical Hamiltonian ZZZ corresponding to a three body interaction.

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