2016
DOI: 10.1155/2016/4176909
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On the Study of Oscillons in Scalar Field Theories: A New Approach

Abstract: We study configurations in one-dimensional scalar field theory, which are time-dependent, localized in space, and extremely long-lived, called oscillons. How the action of changing the minimum value of the field configuration representing the oscillon affects its behavior is investigated. We find that one of the consequences of this procedure is the appearance of a pair of oscillon-like structures presenting different amplitudes and frequencies of oscillation. We also compare our analytical results to numerica… Show more

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Cited by 5 publications
(4 citation statements)
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“…Besides that, they are coupled equations. It might be important to remark that the presence of nonlinearity is not surprising, given that such a behavior is found in a wide range of areas of Physics [53][54][55][56][57][58][59][60][61]. Because of the nonlinearity, we are led to ask if the problem can be analytically resolved.…”
Section: The Static Wormhole Metricmentioning
confidence: 99%
“…Besides that, they are coupled equations. It might be important to remark that the presence of nonlinearity is not surprising, given that such a behavior is found in a wide range of areas of Physics [53][54][55][56][57][58][59][60][61]. Because of the nonlinearity, we are led to ask if the problem can be analytically resolved.…”
Section: The Static Wormhole Metricmentioning
confidence: 99%
“…Solitons, Lorentz symmetry breaking, supersymmetry, and entropy were employed using the CE concept [42][43][44][45]. The CE for traveling solitons reveals that the best value of the parameter responsible for breaking the Lorentz symmetry is that where the energy density is distributed equally around the origin.…”
Section: Introductionmentioning
confidence: 99%
“…Recently, a great number of works using a similar process to break the Lorentz symmetry, with a tensor like kμν, have been used in the literature, from microscope to cosmological scales …”
Section: Extended Lagrangian With Lorentz‐violating Interactionmentioning
confidence: 99%