We provide an overview of the state of the art of adaptive strategies for high-order hp discretizations of partial differential equations; at the same time, we draw attention on some recent results of ours concerning the convergence and complexity analysis of adaptive algorithm of spectral and spectral-element type. Complexity is studied under the assumption that the solution belongs to a sparsity class of exponential type, which means that its best N-term approximation error in the chosen piecewise polynomial basis decays at an exponential rate with respect to N
As a first step towards a mathematically rigorous understanding of adaptive spectral/hp discretizati...
We propose and analyze an hp-adaptive DG–FEM algorithm, termed hp-ADFEM, and its one-dimensional rea...
We propose and analyze an hp-adaptive DG–FEM algorithm, termed hp-ADFEM, and its one-dimensional rea...
We provide an overview of the state of the art of adaptive strategies for high-order hp discretizati...
We provide an overview of the state of the art of adaptive strategies for high-order hp discretizati...
We provide an overview of the state of the art of adaptive strategies for high-order hp discretizati...
We design adaptive high-order Galerkin methods for the solution of linear elliptic problems and stud...
As a first step towards a mathematically rigorous understanding of adaptive spectral/hp discretizati...
As a first step towards a mathematically rigorous understanding of adaptive spectral/hp discretizati...
As a first step towards a mathematically rigorous understanding of adaptive spectral/hp discretizati...
As a first step towards a mathematically rigorous understanding of adaptive spectral/hp discretizati...
As a first step towards a mathematically rigorous understanding of adaptive spectral/hp discretizati...
As a first step towards a mathematically rigorous understanding of adaptive spectral/hp discretizati...
As a first step towards a mathematically rigorous understanding of adaptive spectral/hp discretizati...
As a first step towards a mathematically rigorous understanding of adaptive spectral/hp discretizati...
As a first step towards a mathematically rigorous understanding of adaptive spectral/hp discretizati...
We propose and analyze an hp-adaptive DG–FEM algorithm, termed hp-ADFEM, and its one-dimensional rea...
We propose and analyze an hp-adaptive DG–FEM algorithm, termed hp-ADFEM, and its one-dimensional rea...
We provide an overview of the state of the art of adaptive strategies for high-order hp discretizati...
We provide an overview of the state of the art of adaptive strategies for high-order hp discretizati...
We provide an overview of the state of the art of adaptive strategies for high-order hp discretizati...
We design adaptive high-order Galerkin methods for the solution of linear elliptic problems and stud...
As a first step towards a mathematically rigorous understanding of adaptive spectral/hp discretizati...
As a first step towards a mathematically rigorous understanding of adaptive spectral/hp discretizati...
As a first step towards a mathematically rigorous understanding of adaptive spectral/hp discretizati...
As a first step towards a mathematically rigorous understanding of adaptive spectral/hp discretizati...
As a first step towards a mathematically rigorous understanding of adaptive spectral/hp discretizati...
As a first step towards a mathematically rigorous understanding of adaptive spectral/hp discretizati...
As a first step towards a mathematically rigorous understanding of adaptive spectral/hp discretizati...
As a first step towards a mathematically rigorous understanding of adaptive spectral/hp discretizati...
As a first step towards a mathematically rigorous understanding of adaptive spectral/hp discretizati...
We propose and analyze an hp-adaptive DG–FEM algorithm, termed hp-ADFEM, and its one-dimensional rea...
We propose and analyze an hp-adaptive DG–FEM algorithm, termed hp-ADFEM, and its one-dimensional rea...