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The Heavy Hybrid Spectrum from NRQCD and the Born-Oppenheimer Approximation

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arxiv hep-lat/9909165 v1 pith:TCSVHG2W submitted 1999-09-29 hep-lat

classification hep-lat
keywords hybridapproximationborn-oppenheimerheavy-quarknrqcdobtainedsimulationsspectrum
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The spectrum of heavy-quark hybrids is studied in the leading Born-Oppenheimer (LBO) approximation and using leading-order NRQCD simulations with an improved gluon action on anisotropic lattices. The masses of four hybrid states are obtained from our simulations for lattice spacings 0.1 fm and 0.2 fm and are compared to the LBO predictions obtained using previously-determined glue-excited static potentials. The consistency of results from the two approaches reveals a compelling physical picture for heavy-quark hybrid states.

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  1. Hybrid spin-dependent and hybrid-quarkonium mixing potentials at order $(1 /m_Q)^1$ from SU(3) lattice gauge theory

    hep-lat 2025-01 conditional novelty 7.0 of 10

    First SU(3) lattice computation of the four order-(1/m_Q)^1 hybrid spin-dependent and hybrid-quarkonium mixing potentials at a single lattice spacing.

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