Numerical simulations of kink scattering in a λ-parameterized potential show non-monotonic critical velocities for small kinks, reduced resonance at large λ, and preferential production of large kinks from small-kink collisions at low λ.
From sine-Gordon to vacuumless systems in flat and curved spacetimes
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abstract
In this work we start from the Higgs prototype model to introduce a new model, which makes a smooth transition between systems with well located minima and systems that support no minima at all. We implement this possibility using the deformation procedure, which allows the obtention of a sine-Gordon-like model, controlled by a real parameter that gives rise to a family of models, reproducing the sine-Gordon and the so-called vacuumless models. We also study the thick brane scenarios associated with these models and investigate their stability and renormalization group flow. In particular, one shows how gravity can change from the 5-dimensional warped geometry with a single extra dimension of infinite extent to the conventional 5-dimensional Minkowski geometry.
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Nonlinear Dynamics of Kink Configurations: From Small to Large Kink Collisions
Numerical simulations of kink scattering in a λ-parameterized potential show non-monotonic critical velocities for small kinks, reduced resonance at large λ, and preferential production of large kinks from small-kink collisions at low λ.