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Estimating the two-particle K-matrix for multiple partial waves and decay channels from finite-volume energies

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arxiv 1707.05817 v1 pith:D4H7NFAA submitted 2017-07-18 hep-lat

Estimating the two-particle K-matrix for multiple partial waves and decay channels from finite-volume energies

classification hep-lat
keywords matrixwavesdecayestimatingpartialchannelsenergiesfinite-volume
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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An implementation of estimating the two-to-two $K$-matrix from finite-volume energies based on the L\"uscher formalism and involving a Hermitian matrix known as the "box matrix" is described. The method includes higher partial waves and multiple decay channels. Two fitting procedures for estimating the $K$-matrix parameters, which properly incorporate all statistical covariances, are discussed. Formulas and software for handling total spins up to $S=2$ and orbital angular momenta up to $L=6$ are obtained for total momenta in several directions. First tests involving $\rho$-meson decay to two pions include the $L=3$ and $L=5$ partial waves, and the contributions from these higher waves are found to be negligible in the elastic energy range.

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Cited by 4 Pith papers

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  1. Higher order quantization conditions for two-body scattering with spin

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    Higher-order finite-volume quantization conditions for spin-1/2 + spin-0 scattering are derived to J=11/2 and numerically checked to agree with independent box spectra to six significant figures.

  2. Two-nucleon systems at $m_{\pi}\approx292$ MeV from lattice QCD

    hep-lat 2026-05 conditional novelty 6.0

    At m_pi ≈ 292 MeV, lattice QCD finds virtual-state poles, not bound states, in both the 3S1 and 1S0 nucleon-nucleon channels.

  3. Investigating the role of tetraquark operators in lattice QCD studies of the $a_0(980)$ and $\kappa$ resonances

    hep-lat 2026-03 conditional novelty 6.0

    Including at least one tetraquark operator in lattice QCD correlator matrices reveals a previously missed finite-volume energy level in the Kη subsystem and drastically changes the extracted a0(980) channel spectrum.

  4. Two-nucleon systems at $m_{\pi}\approx292$ MeV from lattice QCD

    hep-lat 2026-05 accept novelty 5.0

    Lattice QCD at m_pi≈292 MeV finds virtual poles in the ^3S1 and ^1S0 NN channels with binding energies 6^{+5}_{-3} MeV and 11^{+6}_{-5} MeV, extracted via Lüscher and NPHF analyses.