Glueball masses in 4-D U(1) lattice gauge theory using the multilevel algorithm
Sep, 2003
18 pages
Published in:
- Nucl.Phys.B 677 (2004) 273-288
e-Print:
- hep-lat/0309003 [hep-lat]
Report number:
- MPP-2003-69
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Abstract:
We take a new look at plaquette-plaquette correlators in 4d compact U(1) lattice gauge theory which are separated in time, both in the confined and the deconfined phases. From the behaviour of these correlators we extract glueball masses in the scalar as well as the axial-vector channels. Also in the deconfined phase, the non-zero momentum axial-vector correlator gives us information about the photon which appears as a massless particle in the spectrum. Using the Luescher - Weisz multi-level algorithm, we are able to go to large time separations which were not possible previously.Note:
- 18 pages, 7 figures and 3 tables. Minor notational changes
- 11.15.Ha
- gauge field theory: U(1)
- lattice field theory
- glueball: mass
- glueball: scalar
- glueball: axial-vector
- numerical calculations: Monte Carlo
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