Constructing Effective Interactions via Projection-Based Inversion
Abstract
We present a numerical prescription for extracting continuum scattering information from discrete spectra by constraining effective interactions inspired by effective field theory (EFT). Using a Multiparameter Eigenvalue Problem (MEP) emulator, we map energies to a sum of contact potentials by recasting the inverse problem as a linear eigenvalue equation. Because our method determines the effective interaction rather than the scattering amplitude, it can handle non-perturbative Coulomb interactions and different types of truncated Hilbert spaces without analytic quantization conditions. It therefore allows standard bound-state codes to be used for scattering calculations without modification. We validate this prescription across multiple ab initio frameworks using neutron-alpha scattering, alpha-alpha scattering with full Coulomb, and a prediction of proton-O resonances.
Cite
@article{arxiv.2608.03748,
title = {Constructing Effective Interactions via Projection-Based Inversion},
author = {Hang Yu and Serdar Elhatisari and Sebastian König and Dean Lee and Yuan-Zhuo Ma and Takayuki Miyagi},
journal= {arXiv preprint arXiv:2608.03748},
year = {2026}
}
Comments
5 pages, 3 figures