Muckenhoupt matrix weights
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Publication:2050700
DOI10.1007/s12220-020-00440-zzbMath1471.42044OpenAlexW3036715700MaRDI QIDQ2050700
Publication date: 31 August 2021
Published in: The Journal of Geometric Analysis (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s12220-020-00440-z
Maximal functions, Littlewood-Paley theory (42B25) Function spaces arising in harmonic analysis (42B35) Positive matrices and their generalizations; cones of matrices (15B48) Commutators, derivations, elementary operators, etc. (47B47)
Cites Work
- On transference of multipliers on matrix weighted \(L_p\)-spaces
- Harmonic analysis on nilpotent groups and singular integrals. I: Oscillatory integrals
- Factorization of \(A_p\) weights
- Factorization theorems for Hardy spaces in several variables
- A matrix weighted \(T1\) theorem for matrix kernelled CZOs and a matrix weighted John-Nirenberg theorem
- Matrix \(A_p\) weights via maximal functions.
- Schauder bases of integer translates
- On stability of Schauder bases of integer translates
- Bloom's inequality: commutators in a two-weight setting
- Matrix-weighted Besov spaces
- Interpolation of Operators with Change of Measures
- A Commutator Theorem and Weighted BMO
- A Remark on A 1 -Weights for the Strong Maximal Function
- Another Characterization of BMO
- Weighted norm inequalities for maximal functions and singular integrals
- Matrix $A_p$ weights via $S$-functions
- Projection operators on matrix weighted $L^p$ and a simple sufficient Muckenhoupt condition
- Classical Fourier Analysis
- Muckenhoupt Class Weight Decomposition and BMO Distance to Bounded Functions
- Weighted Norm Inequalities for the Hardy Maximal Function
- Weighted Norm Inequalities for the Conjugate Function and Hilbert Transform
- The distance in BMO to \(L^\infty\)
- Wavelets and the angle between past and future
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