The ability to reliably measure the energy of an excited hadron in Lattice QCD simulations hinges on the accurate determination of all lower-lying energies in the same symmetry channel. These include not only single-particle energies, but also the energies of multi-hadron states. This talk deals with the determination of multi-hadron energies in Lattice QCD. The group-theoretical derivation of lattice interpolating operators that couple optimally to multi-hadron states is described. We briefly discuss recent algorithmic developments which allow for the efficient implementation of these operators in software, and present numerical results from the Hadron Spectrum Collaboration. © 2010 American Institute of Physics.
CITATION STYLE
Foley, J., Bulava, J., Juge, K. J., Morningstar, C., Peardon, M., & Wong, C. H. (2010). Multi-hadron states in Lattice QCD spectroscopy. In AIP Conference Proceedings (Vol. 1257, pp. 789–793). https://doi.org/10.1063/1.3483444
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