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Using the constrained-path quantumMonteCarlo method, we systematically study the half-filled Hubbard model on AA-stacked honeycomb lattice.
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To obtain results at zero temperature, we employ the projective quantumMonteCarlo method as an impurity solver.
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In this communication, we propose a method for obtaining isolated excited states within the full configuration interaction quantumMonteCarlo framework.
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We illustrate our findings with a simple model and realistic quantumMonteCarlo simulations for bosonic atoms and compare the latter to experiments.