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Towards a nonperturbative construction of the $S$-matrix

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abstract

We present a nonperturbative recipe for directly computing the $S$-matrix in strongly-coupled QFTs. The method makes use of spectral data obtained in a Hamiltonian framework and can be applied to a wide range of theories, including potentially QCD. We demonstrate the utility of this prescription in the specific example of the 2+1d $O(N)$ model at large $N$, using energy eigenstates computed with Hamiltonian truncation to reproduce the full $2 \to 2$ scattering amplitude for arbitrary (complex) center-of-mass energy.

fields

hep-th 1

years

2025 1

verdicts

CONDITIONAL 1

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  • Systematic Improvement of Hamiltonian Truncation Effective Theory hep-th · 2025-07-21 · conditional · none · ref 34 · internal anchor

    NLO matching corrections with nonlocal terms are computed for 1+1D λφ⁴ Hamiltonian truncation, and the eigenvalue error is shown to scale as 1/Emax⁴, confirming the effective theory power counting.