# Discretization effects and gauge independence for the electric and magnetic screening masses

Cucchieri A, Karsch F (2000)
Nuclear Physics B, Proceedings Supplments 83-84: 357-359.

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Konferenzbeitrag | Veröffentlicht | Englisch
Autor
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Abstract / Bemerkung
We evaluate the electric and magnetic screening masses from the long-distance behavior of the (temporal and spatial) gluon correlation functions, for pure SU(2) gauge theory at finite temperature. In order to investigate the gauge dependence of the screening masses we consider seven different gauges. We also evaluate these masses using different definitions of the lattice gluon field, corresponding to discretization errors of different orders.
Erscheinungsjahr
Band
83-84
Seite
357-359
ISSN
PUB-ID

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Cucchieri A, Karsch F. Discretization effects and gauge independence for the electric and magnetic screening masses. Nuclear Physics B, Proceedings Supplments. 2000;83-84:357-359.
Cucchieri, A., & Karsch, F. (2000). Discretization effects and gauge independence for the electric and magnetic screening masses. Nuclear Physics B, Proceedings Supplments, 83-84, 357-359. doi:10.1016/S0920-5632(00)91672-4
Cucchieri, A., and Karsch, F. (2000). Discretization effects and gauge independence for the electric and magnetic screening masses. Nuclear Physics B, Proceedings Supplments 83-84, 357-359.
Cucchieri, A., & Karsch, F., 2000. Discretization effects and gauge independence for the electric and magnetic screening masses. Nuclear Physics B, Proceedings Supplments, 83-84, p 357-359.
A. Cucchieri and F. Karsch, “Discretization effects and gauge independence for the electric and magnetic screening masses”, Nuclear Physics B, Proceedings Supplments, vol. 83-84, 2000, pp. 357-359.
Cucchieri, A., Karsch, F.: Discretization effects and gauge independence for the electric and magnetic screening masses. Nuclear Physics B, Proceedings Supplments. 83-84, 357-359 (2000).
Cucchieri, A., and Karsch, Frithjof. “Discretization effects and gauge independence for the electric and magnetic screening masses”. Nuclear Physics B, Proceedings Supplments 83-84 (2000): 357-359.

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### Quellen

arXiv: hep-lat/9909011

Inspire: 506463