Normalizing flow importance sampling is demonstrated for the nuclear matter grand potential and density-density response function, with order-of-magnitude uncertainty reduction over VEGAS and transferability across phase space and kinematic variables.
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Application of normalizing flows to nuclear many-body perturbation theory
Normalizing flow importance sampling is demonstrated for the nuclear matter grand potential and density-density response function, with order-of-magnitude uncertainty reduction over VEGAS and transferability across phase space and kinematic variables.