Group-theoretical construction of finite-momentum and multi-particle operators for lattice hadron spectroscopy

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Abstract

Determining the spectrum of hadronic excitations from Monte Carlo simulations requires the use of interpolating operators that couple to multi-particle states. Recent algorithmic advances have made the inclusion of multi-hadron operators in spectroscopy calculations a practical reality. In this talk, a procedure for constructing a set of multi-hadron interpolators that project onto the states of interest is described. To aid in the interpretation of simulation data, operators are designed to transform irreducibly under the lattice symmetry group. The identification of a set of optimal single-hadron interpolators for states with non-zero momenta is an essential intermediate step in this analysis.

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Foley, J., Bulava, J., Jhang, Y. C., Juge, K. J., Lenkner, D., Morningstar, C., & Wong, C. H. (2011). Group-theoretical construction of finite-momentum and multi-particle operators for lattice hadron spectroscopy. In Proceedings of Science (Vol. 139). Sissa Medialab Srl. https://doi.org/10.22323/1.139.0120

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