On the convergence of the quadratic method
Lyonell Boulton, Aatef Hobiny
Abstract
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Lyonell Boulton, Aatef Hobiny
Abstract
Open-access reader
The convergence of the so-called quadratic method for computing eigenvalue enclosures of general self-adjoint operators is examined. Explicit asymptotic bounds for convergence to isolated eigenvalues are found. These bounds turn out to improve significantly upon those determined in previous investigations. The theory is illustrated by means of several numerical experiments performed on particularly simple benchmark models of one-dimensional Schrodinger operators.
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The convergence of the so-called quadratic method for computing eigenvalue enclosures of general self-adjoint operators is examined. Explicit asymptotic bounds for convergence to isolated eigenvalues are found. These bounds turn out to improve significantly upon those determined in previous investigations. The theory is illustrated by means of several numerical experiments performed on particularly simple benchmark models of one-dimensional Schrodinger operators.
Key concepts: Eigenvalues and eigenvectors, Convergence (economics), Quadratic equation, Mathematics, Applied mathematics, Simple (philosophy), Benchmark (surveying), Physics