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arxiv: 1211.7301 · v3 · pith:GGP7RZ4Cnew · submitted 2012-11-30 · 🧮 math.AP · cond-mat.mes-hall· cond-mat.mtrl-sci· cond-mat.soft· physics.flu-dyn

Intermediate Asymptotics of the Capillary-Driven Thin Film Equation

classification 🧮 math.AP cond-mat.mes-hallcond-mat.mtrl-scicond-mat.softphysics.flu-dyn
keywords equationasymptoticscapillary-drivenenablesfilmfunctiongreeninitial
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We present an analytical and numerical study of the two-dimensional capillary-driven thin film equation. In particular, we focus on the intermediate asymptotics of its solutions. Linearising the equation enables us to derive the associated Green's function and therefore obtain a complete set of solutions. Moreover, we show that the rescaled solution for any summable initial profile uniformly converges in time towards a universal self-similar attractor that is precisely the rescaled Green's function. Finally, a numerical study on compact-support initial profiles enables us to conjecture the extension of our results to the nonlinear equation.

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