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Autori principali: Gallegos, Domingo, Málaga, Carlos
Natura: Preprint
Pubblicazione: 2025
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Accesso online:https://arxiv.org/abs/2503.08947
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author Gallegos, Domingo
Málaga, Carlos
author_facet Gallegos, Domingo
Málaga, Carlos
contents An application of the Newton-Cartan framework to the study of membranes is presented. Specifically, for membranes of co-dimension one in hydrostatic equilibrium embedded in a flat ambient Newton-Cartan spacetime. For such membranes, the corresponding equilibrium partition function at second order in the hydrodynamic derivative expansion is shown. Equilibrium constraints and the corresponding set of equilibrium constitutive relations are found. For the generically non-constant elastic subset of thermodynamic coefficients, the Young-Laplace equation is presented for the case of two-dimensional axisymmetric closed membranes embedded in a flat three-dimensional spacetime with constant ambient vorticity. Some numerical solutions to this Young-Laplace equation are examined, and some analytic solutions for particular choices of the thermodynamic coefficients are also discussed.
format Preprint
id arxiv_https___arxiv_org_abs_2503_08947
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Hydrostatic Newton-Cartan Membranes
Gallegos, Domingo
Málaga, Carlos
High Energy Physics - Theory
Soft Condensed Matter
Mathematical Physics
An application of the Newton-Cartan framework to the study of membranes is presented. Specifically, for membranes of co-dimension one in hydrostatic equilibrium embedded in a flat ambient Newton-Cartan spacetime. For such membranes, the corresponding equilibrium partition function at second order in the hydrodynamic derivative expansion is shown. Equilibrium constraints and the corresponding set of equilibrium constitutive relations are found. For the generically non-constant elastic subset of thermodynamic coefficients, the Young-Laplace equation is presented for the case of two-dimensional axisymmetric closed membranes embedded in a flat three-dimensional spacetime with constant ambient vorticity. Some numerical solutions to this Young-Laplace equation are examined, and some analytic solutions for particular choices of the thermodynamic coefficients are also discussed.
title Hydrostatic Newton-Cartan Membranes
topic High Energy Physics - Theory
Soft Condensed Matter
Mathematical Physics
url https://arxiv.org/abs/2503.08947