Write the scalar field energy as , whereUnder the Derrick scaling , a change of variables givesA finite-energy solution of the Euler-Lagrange equation is stationary under this admissible variation. The Derrick virial identity is therefore
The static field equation is , so integration givesThe polynomial before is nonnegative and vanishes, so requiring the minimum to be zero fixes . Hence the vacuum manifold iswhich has three elements. A finite-energy scalar-field kink can join only adjacent vacua: a solution cannot cross the intermediate vacuum at finite because its first integral would have there and the Picard-Lindelof theorem would make it constant. There are therefore four oriented topological sectors,comprising two increasing kinks and their two antikinks. Symmetry under and spatial reflection generates all four from one profile.
For the sector, completing the square gives the Bogomolny boundEquality holds for the Bogomolny equationWith , this becomes the logistic differential equation . Translation invariance supplies an arbitrary center , and the explicit kink in a phi-six model isIt tends to and at the two spatial ends and saturates the bound. Its mass is consequently
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