Polynomial Eigenfunctions and Matrix Lyapunov Equations from Energy Balance Integrals

Fuente: arXiv
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Main Author: Moriya, Netzer
Format: Preprint
Published: 2025
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author Moriya, Netzer
author_facet Moriya, Netzer
contents We establish a unified theoretical framework that connects classical orthogonal polynomial systems to matrix Lyapunov equations through the fundamental physics of energy dissipation in stochastic dynamical systems. Starting from the energy balance principle in infinite-dimensional Hilbert spaces, we derive a master integral representation that naturally encompasses both spectral geometry and covariance dynamics. The theory reveals that established orthogonal polynomials (Zernike, Hermite, spherical harmonics) and matrix Lyapunov equations are dual manifestations of the same underlying energy dissipation structure. We provide rigorous mathematical foundations showing how finite-dimensional projections of infinite-dimensional energy integrals reproduce classical matrix equations, with specific structure determined by the symmetries of noise processes. The framework demonstrates that adding uniform dissipation to classical differential operators preserves their polynomial eigenfunction structure while ensuring the energy balance conditions required for physical consistency.
format Preprint
id arxiv_https___arxiv_org_abs_2506_15288
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Polynomial Eigenfunctions and Matrix Lyapunov Equations from Energy Balance Integrals
Moriya, Netzer
Optimization and Control
Mathematical Physics
49Mxx
We establish a unified theoretical framework that connects classical orthogonal polynomial systems to matrix Lyapunov equations through the fundamental physics of energy dissipation in stochastic dynamical systems. Starting from the energy balance principle in infinite-dimensional Hilbert spaces, we derive a master integral representation that naturally encompasses both spectral geometry and covariance dynamics. The theory reveals that established orthogonal polynomials (Zernike, Hermite, spherical harmonics) and matrix Lyapunov equations are dual manifestations of the same underlying energy dissipation structure. We provide rigorous mathematical foundations showing how finite-dimensional projections of infinite-dimensional energy integrals reproduce classical matrix equations, with specific structure determined by the symmetries of noise processes. The framework demonstrates that adding uniform dissipation to classical differential operators preserves their polynomial eigenfunction structure while ensuring the energy balance conditions required for physical consistency.
title Polynomial Eigenfunctions and Matrix Lyapunov Equations from Energy Balance Integrals
topic Optimization and Control
Mathematical Physics
49Mxx
url https://arxiv.org/abs/2506.15288