We consider a model for vapor-liquid-solid growth of nanowires proposed in the physical literature. Liquid drops are described as local or global volume-constrained minimizers of the capillarity energy outside a semi-infinite convex obstacle modeling the nanowire. We first address the existence of global minimizers and then, in the case of rotationally symmetric nanowires, we investigate how the presence of a sharp edge affects the shape of local minimizers and the validity of Young's law.

Global and local energy minimizers for a nanowire growth model / Fonseca, I.; Fusco, N.; Leoni, G.; Morini, M.. - In: ANNALES DE L INSTITUT HENRI POINCARÉ. ANALYSE NON LINÉAIRE. - ISSN 0294-1449. - 40:4(2023), pp. 1-39. [10.4171/AIHPC/54]

Global and local energy minimizers for a nanowire growth model

Morini M.
2023-01-01

Abstract

We consider a model for vapor-liquid-solid growth of nanowires proposed in the physical literature. Liquid drops are described as local or global volume-constrained minimizers of the capillarity energy outside a semi-infinite convex obstacle modeling the nanowire. We first address the existence of global minimizers and then, in the case of rotationally symmetric nanowires, we investigate how the presence of a sharp edge affects the shape of local minimizers and the validity of Young's law.
2023
Global and local energy minimizers for a nanowire growth model / Fonseca, I.; Fusco, N.; Leoni, G.; Morini, M.. - In: ANNALES DE L INSTITUT HENRI POINCARÉ. ANALYSE NON LINÉAIRE. - ISSN 0294-1449. - 40:4(2023), pp. 1-39. [10.4171/AIHPC/54]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11381/2999013
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