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The chapters in this volume are based on talks given at the inaugural Aspects of Time-Frequency Analysis conference held in Turin, Italy from July 5-7, 2017, which brought together experts in harmonic analysis and its applications. New connections between different but related areas were presented in the context of time-frequency analysis, encouraging future research and collaborations. Some of the topics covered include: • Abstract harmonic analysis, • Numerical harmonic analysis, • Sampling theory, • Gabor analysis, • Time-frequency analysis, • Mathematical signal processing, • Pseudodifferential operators, and • Applications of harmonic analysis to quantum mechanics. Landscapes of Time-Frequency Analysis will be of particular interest to researchers and advanced students working in time-frequency analysis and other related areas of harmonic analysis.
Fourier analysis. --- Operator theory. --- Differential equations, partial. --- Harmonic analysis. --- Fourier Analysis. --- Operator Theory. --- Partial Differential Equations. --- Abstract Harmonic Analysis. --- Analysis, Fourier --- Mathematical analysis --- Analysis (Mathematics) --- Functions, Potential --- Potential functions --- Banach algebras --- Calculus --- Mathematics --- Bessel functions --- Fourier series --- Harmonic functions --- Time-series analysis --- Partial differential equations --- Functional analysis --- Partial differential equations. --- Differential equations. --- Differential Equations. --- 517.91 Differential equations --- Differential equations
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The present volume gathers contributions to the conference Microlocal and Time-Frequency Analysis 2018 (MLTFA18), which was held at Torino University from the 2nd to the 6th of July 2018. The event was organized in honor of Professor Luigi Rodino on the occasion of his 70th birthday. The conference’s focus and the contents of the papers reflect Luigi’s various research interests in the course of his long and extremely prolific career at Torino University.
Partial differential equations. --- Harmonic analysis. --- Operator theory. --- Global analysis (Mathematics). --- Manifolds (Mathematics). --- Functional analysis. --- Partial Differential Equations. --- Abstract Harmonic Analysis. --- Operator Theory. --- Global Analysis and Analysis on Manifolds. --- Functional Analysis. --- Functional calculus --- Calculus of variations --- Functional equations --- Integral equations --- Geometry, Differential --- Topology --- Analysis, Global (Mathematics) --- Differential topology --- Functions of complex variables --- Geometry, Algebraic --- Functional analysis --- Analysis (Mathematics) --- Functions, Potential --- Potential functions --- Banach algebras --- Calculus --- Mathematical analysis --- Mathematics --- Bessel functions --- Fourier series --- Harmonic functions --- Time-series analysis --- Partial differential equations --- Microlocal analysis. --- Time-series analysis. --- Analysis of time series --- Autocorrelation (Statistics) --- Harmonic analysis --- Mathematical statistics --- Probabilities --- Differential equations, Partial. --- Global analysis (Mathematics) --- Manifolds (Mathematics)
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The chapters in this volume are based on talks given at the inaugural Aspects of Time-Frequency Analysis conference held in Turin, Italy from July 5-7, 2018, which brought together experts in harmonic analysis and its applications. New connections between different but related areas were presented in the context of time-frequency analysis, encouraging future research and collaborations. Some of the topics covered include: • Abstract harmonic analysis, • Numerical harmonic analysis, • Sampling theory, • Gabor analysis, • Time-frequency analysis, • Mathematical signal processing, • Pseudodifferential operators, and • Applications of harmonic analysis to quantum mechanics. Landscapes of Time-Frequency Analysis will be of particular interest to researchers and advanced students working in time-frequency analysis and other related areas of harmonic analysis.
Operator theory --- Harmonic analysis. Fourier analysis --- Partial differential equations --- Differential equations --- Mathematical analysis --- Fourieranalyse --- differentiaalvergelijkingen --- analyse (wiskunde) --- Fourierreeksen --- mathematische modellen --- wiskunde
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Operator theory --- Harmonic analysis. Fourier analysis --- Partial differential equations --- Differential equations --- Mathematical analysis --- Fourieranalyse --- differentiaalvergelijkingen --- analyse (wiskunde) --- Fourierreeksen --- mathematische modellen --- wiskunde
Choose an application
Choose an application
The present volume gathers contributions to the conference Microlocal and Time-Frequency Analysis 2018 (MLTFA18), which was held at Torino University from the 2nd to the 6th of July 2018. The event was organized in honor of Professor Luigi Rodino on the occasion of his 70th birthday. The conference’s focus and the contents of the papers reflect Luigi’s various research interests in the course of his long and extremely prolific career at Torino University.
Algebraic geometry --- Differential geometry. Global analysis --- Operator theory --- Functional analysis --- Harmonic analysis. Fourier analysis --- Partial differential equations --- differentiaalvergelijkingen --- analyse (wiskunde) --- functies (wiskunde) --- statistiek --- wiskunde --- geometrie
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This contributed volume features chapters based on talks given at the second international conference titled Aspects of Time-Frequency Analysis (ATFA 19), held at Politecnico di Torino from June 25th to June 27th, 2019. Written by experts in harmonic analysis and its applications, these chapters provide a valuable overview of the state-of-the-art of this active area of research. New results are collected as well, making this a valuable resource for readers seeking to be brought up-to-date. Topics covered include: Signal analysis Quantum theory Modulation space theory Applications to the medical industry Wavelet transform theory Anti-Wick operators Landscapes of Time-Frequency Analysis: ATFA 2019 will be of particular interest to researchers and advanced students working in time-frequency analysis and other related areas of harmonic analysis.
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