Carnegie Mellon University
Browse
file.pdf (610.2 kB)

Glueball spectrum and matrix elements on anisotropic lattices

Download (610.2 kB)
journal contribution
posted on 2006-01-01, 00:00 authored by Y. Chen, A. Alexandru, S. J. Dong, I. Horvaith, F. X. Lee, K. F. Liu, Nilmani Mathur, Colin Morningstar, Michael Peardon, S. Tamhankar, B. L. Young, J. B. Zhang

The glueball-to-vacuum matrix elements of local gluonic operators in scalar, tensor, and pseudoscalar channels are investigated numerically on several anisotropic lattices with the spatial lattice spacing ranging from 0.1–0.2 fm. These matrix elements are needed to predict the glueball branching ratios in J/ψ radiative decays which will help identify the glueball states in experiments. Two types of improved local gluonic operators are constructed for a self-consistent check and the finite-volume effects are studied. We find that lattice spacing dependence of our results is very weak and the continuum limits are reliably extrapolated, as a result of improvement of the lattice gauge action and local operators. We also give updated glueball masses with various quantum numbers.

History

Date

2006-01-01

Usage metrics

    Keywords

    Exports

    RefWorks
    BibTeX
    Ref. manager
    Endnote
    DataCite
    NLM
    DC