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Estimating energy levels from lattice QCD correlation functions using a transfer matrix formalism

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arxiv 2412.01900 v2 pith:G6KZF6G2 submitted 2024-12-02 hep-lat hep-phhep-thnucl-th

classification hep-lathep-phhep-thnucl-th
keywords energycorrelationfunctionslatticelevelsmethodmatrixcomputing
verification ladder T0 review T1 audit T2 compute T3 formal
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We present an efficient method for extracting energy levels from lattice QCD correlation functions by computing the eigenvalues of the transfer matrix associated with the lattice QCD Hamiltonian. While mathematically and numerically equivalent to the recently introduced Lanczos procedure, our approach introduces a novel prescription for removing spurious eigenvalues using a kernel density estimator (KDE) and Gaussian-convoluted histogram method. This strategy yields a robust and stable estimate of the energy spectrum, outperforming the Cullum-Willoughby filtering technique in efficiency. In addition, we detail how this method can be applied to extract overlap factors from two-point correlation functions, as well as matrix elements from three-point functions with a current insertion. Furthermore, we extend the methodology to accommodate correlation matrices constructed from a variational basis of operators, with its Block formulation. We demonstrate the efficacy of this framework by computing the two lowest energy levels for a broad range of hadrons, including several nuclei. Although the signal-to-noise ratio is not significantly improved, the extracted energy levels are found to be more reliable than those obtained with conventional techniques. Within a given statistical ensemble, the proposed method effectively captures both statistical uncertainties and systematic errors, including those arising from the choice of fitting window, making it a robust and practical tool for lattice QCD analysis.

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Cited by 3 Pith papers

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    hep-lat 2026-07 conditional novelty 7.0 of 10

    First lattice-QCD constraints on the nonperturbative gluon Collins-Soper kernel are obtained at near-physical pion mass with uNNLL LaMET matching on a single a=0.15 fm ensemble.

  2. Unbiased Krylov subspace method for the extraction of ground state from lattice correlators

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  3. Lattice QCD Study of Positive Parity Dibaryons with Maximal Charm and Strangeness

    hep-lat 2025-07 conditional novelty 6.0 of 10

    Lattice QCD finds the Omega_ccc-Omega_ccc dibaryon likely bound by about 45 MeV in the spin-0 channel, Omega-Omega near threshold, and both spin-2 systems unbound.

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