activity
20242026
collaborators

7 papers

math.NA2026

A space-time sparse-grid method for the wave equation

Matteo Ferrari, Andrea Moiola, Chiara Perinati +1

We develop a fast space-time numerical scheme for approximating solutions to the linear wave equation. The approach is based on the sparse-grid combination technique applied to a c…

math.NA2026

A matrix-based approach to the stability of a space-time isogeometric method for the linear Schrödinger equation

Matteo Ferrari, Sergio Gómez

We propose a space-time isogeometric finite element method for the linear Schrödinger equation, and establish its unconditional stability through a matrix-based analysis. Although…

math.NA2026

Stability, convergence, and geometric properties of second-order-in-time space-time discretizations for linear and semilinear wave equations

Matteo Ferrari, Ilaria Perugia, Enrico Zampa

We revisit second-order-in-time space-time discretizations of the linear and semilinear wave equations by establishing precise equivalences with first-order-in-time formulations. F…

math.NA2025

Intrinsic unconditional stability in space-time isogeometric approximation of the acoustic wave equation in second-order formulation

Matteo Ferrari, Ilaria Perugia

We present a novel space-time isogeometric discretization of the acoustic wave equation in second-order formulation that is intrinsically unconditionally stable. The method relies…

math.NA2025

Inf-sup stable space-time discretization of the wave equation based on a first-order-in-time variational formulation

Matteo Ferrari, Ilaria Perugia, Enrico Zampa

In this paper, we present a conforming space-time discretization of the wave equation based on a first-order-in-time variational formulation with exponential weights in time. We an…

math.NA2024

Unconditionally stable space-time isogeometric discretization for the wave equation in Hamiltonian formulation

Matteo Ferrari, Sara Fraschini, Gabriele Loli +1

We consider a family of conforming space-time discretizations for the wave equation based on a first-order-in-time formulation employing maximal regularity splines. In contrast wit…