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Electromagnetic Form Factors of Excited Nucleons via Parity-Expanded Variational Analysis

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arxiv 1701.07177 v1 pith:VPISA5S3 submitted 2017-01-25 hep-lat

Electromagnetic Form Factors of Excited Nucleons via Parity-Expanded Variational Analysis

classification hep-lat
keywords analysisparityvariationaleigenstatesexcitedfactorsformbaryons
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Variational analysis techniques in lattice QCD are powerful tools that give access to the excited state spectrum of QCD. At zero momentum, these techniques are well established and can cleanly isolate energy eigenstates of either positive or negative parity. In order to compute the form factors of a single energy eigenstate, we must perform a variational analysis at non-zero momentum. When we do this with baryons, we run into issues with parity mixing, as boosted baryons are not eigenstates of parity. The parity-expanded variational analysis (PEVA) technique is a novel method for ensuring the successful and consistent isolation of boosted baryon eigenstates. This is achieved through a parity expansion of the operator basis used to construct the correlation matrix. World-first calculations of excited state nucleon form factors using this new technique are presented, showing the improvement over conventional methods.

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    Kinematically enhanced nucleon interpolators improve precision of renormalized quark matrix elements by an order of magnitude at 2.5 GeV with no observed lattice spacing dependence on CLS ensembles.