A minimal NLO chiral EFT nuclear interaction constrained only in A≤3 nuclei predicts binding energies up to 40Ca with small residual cutoff dependence via an absolute-momentum lattice regulator.
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PTQMC stochastically reproduces exact MBPT coefficients up to 16th order on the Richardson pairing model and defines e^S as a complexity measure that better indicates when perturbative expansions remain valid.
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Cutoff-independent predictions from nuclear lattice effective field theory
A minimal NLO chiral EFT nuclear interaction constrained only in A≤3 nuclei predicts binding energies up to 40Ca with small residual cutoff dependence via an absolute-momentum lattice regulator.
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Stochastic many-body perturbation theory for high-order calculations
PTQMC stochastically reproduces exact MBPT coefficients up to 16th order on the Richardson pairing model and defines e^S as a complexity measure that better indicates when perturbative expansions remain valid.