Variational problems and their quantitative stability in the continuous setting are a classical topic in mathematical analysis and calculus of variations. In recent years, however, increasing attention has been devoted to the challenges arising when extending these problems to discrete settings, motivated by material science and crystallisation theory. In the thesis, we establish maximal fluctuation estimates for minimizers of two variational problems on periodic lattices, by exploiting the Q-closeness technique introduced by Cicalese and Leonardi, which enables us to lift discrete problems into the the continuous framework by associating suitable domains to configurations of points. In particular, in the second chapter, we focus on the edge-isoperimetric problem and we propose a more canonical construction of the associated map for the d-dimensional square lattice, the honeycomb lattice and the triangular lattice; moreover, we briefly discuss the difficulties of extending this approach to other lattices. Finally, in the third chapter, we study a discrete Faber-Krahn inequality on Z^d and we provide quantitative estimates for almost minimizers among configurations of fixed cardinality.

The Q-closeness technique: an application to isoperimetric inequalities in 2-d lattices and to the Faber-Krahn inequality / Morselli, Gabriele. - (2025 Dec 17), pp. 1-118. [10.15168/11572_468554]

The Q-closeness technique: an application to isoperimetric inequalities in 2-d lattices and to the Faber-Krahn inequality

Morselli, Gabriele
2025-12-17

Abstract

Variational problems and their quantitative stability in the continuous setting are a classical topic in mathematical analysis and calculus of variations. In recent years, however, increasing attention has been devoted to the challenges arising when extending these problems to discrete settings, motivated by material science and crystallisation theory. In the thesis, we establish maximal fluctuation estimates for minimizers of two variational problems on periodic lattices, by exploiting the Q-closeness technique introduced by Cicalese and Leonardi, which enables us to lift discrete problems into the the continuous framework by associating suitable domains to configurations of points. In particular, in the second chapter, we focus on the edge-isoperimetric problem and we propose a more canonical construction of the associated map for the d-dimensional square lattice, the honeycomb lattice and the triangular lattice; moreover, we briefly discuss the difficulties of extending this approach to other lattices. Finally, in the third chapter, we study a discrete Faber-Krahn inequality on Z^d and we provide quantitative estimates for almost minimizers among configurations of fixed cardinality.
17-dic-2025
XXXVII
2024-2025
Matematica (29/10/12-)
Mathematics
Leonardi, Gian Paolo
no
Inglese
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Descrizione: PhD thesis
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/468554
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