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Long-Lived Localized Field Configurations in Small Lattices: Application to Oscillons

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arxiv patt-sol/9909002 v1 pith:KPT5PFHE submitted 1999-08-29 patt-sol cond-mathep-lathep-phnlin.PSphysics.comp-ph

Long-Lived Localized Field Configurations in Small Lattices: Application to Oscillons

classification patt-sol cond-mathep-lathep-phnlin.PSphysics.comp-ph
keywords oscillonsconfigurationslatticesmethoddimensionalfieldlocalizedlong-lived
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Long-lived localized field configurations such as breathers, oscillons, or more complex objects naturally arise in the context of a wide range of nonlinear models in different numbers of spatial dimensions. We present a numerical method, which we call the {\it adiabatic damping method}, designed to study such configurations in small lattices. Using 3-dimensional oscillons in $\phi^4$ models as an example, we show that the method accurately (to a part in 10^5 or better) reproduces results obtained with static or dynamically expanding lattices, dramatically cutting down in integration time. We further present new results for 2-dimensional oscillons, whose lifetimes would be prohibitively long to study with conventional methods.

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