This volume contains the proceedings of the AMS Special Session on Harmonic Analysis and Partial Differential Equations, held from April 21-22, 2018, at Northeastern University, Boston, Massachusetts. The book features a series of recent developments at the interface between harmonic analysis and pa
Advances in Harmonic Analysis and Partial Differential Equations (Contemporary Mathematics)
β Scribed by Donatella Danielli (editor), Irina Mitrea (editor)
- Publisher
- Amer Mathematical Society
- Year
- 2020
- Tongue
- English
- Leaves
- 212
- Series
- Contemporary Mathematics (Book 748)
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Table of Contents
Cover
Title page
Contents
Preface
πππ on shapes and sharp constants
1. Introduction
2. Preliminaries
3. π΅ππ spaces with respect to shapes
4. Shapewise inequalities on π΅ππ
5. Rearrangements and the absolute value
6. Truncations
7. The John-Nirenberg inequality
8. Product decomposition
Acknowledgments
References
Applications of harmonic analysis techniques to regularity problems of dissipative equations
1. Overview
2. Harmonic analysis tools
3. Low modes regularity criteria for fluid equations
Acknowledgments
References
Two classical properties of the Bessel quotient πΌ_{π+1}/πΌ_{π} and their implications in pdeβs
1. Introduction
2. The Bessel semigroup
3. A curvature-dimension inequality
4. An inequality of Li-Yau type for the Bessel semigroup
5. A comparison with the results of Chiarenza-Serapioni and of Epstein-Mazzeo
6. A sharp Harnack inequality for the parabolic extension problem
7. Monotonicity formulas of Struwe and Almgren-Poon type for the Bessel semigroup
8. Appendix: The modified Bessel function πΌ_{π}(π§)
Acknowledgments
References
On the existence of dichromatic single element lenses
1. Introduction
2. Preliminaries
3. The collimated case: Problem A
3.1. Estimates of the upper surfaces for two colors
4. First order functional differential equations
4.1. Uniqueness of solutions
5. One point source case: Problem B
5.1. Two dimensional case, π€βΞ©.
5.2. Derivation of a system of functional equations from the solvability of problem B in the plane.
5.3. Solutions of (5.4)yield local solutions to the optical problem.
5.4. On the solvability of the algebraic system (4.3)
5.5. Existence of local solutions to (5.4)
Acknowledgments
References
Free boundary regularity near the fixed boundary for the fully nonlinear obstacle problem
1. Introduction
2. Non-transversal intersection and classification of blow-up limits
3. πΆΒΉ regularity
4. Appendix
Acknowledgments
References
The Poisson integral formula for variable-coefficient elliptic systems in rough domains
1. Introduction
2. Preliminary matters
3. Proof of main result
Acknowledgment
References
Variations on quantum ergodic theorems, II
1. Introduction
2. Quantum ergodic theorems with discontinuous symbols
2.1. Quantization of discontinuous symbols
2.2. Weyl law
2.3. Quantum ergodic theorems
2.4. πΏ^{π} eigenfunction estimates and quantum ergodic theorems
3. Quantum ergodic theorems for conjugates π^{-ππ‘Ξ}π΄π^{ππ‘Ξ}
3.1. Complements to Weyl laws and Egorovβs theorem
3.2. Proof of Theorem 3.0.3
3.3. Comments and examples
References
Back Cover
β¦ Subjects
Mathematics;Calculus; Differential equations
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