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Extra Form
Lecturer 김준일
Dept. 연세대 수학과
date Apr 04, 2019

The spherical average has been a source of many problems in harmonic analysis.
Since late 90's,  the study of  the maximal spherical means on the Heisenberg group $mathbb{H}^n$ has been started to show  the pointwise ergodic theorems on the    groups. 
Later, it has turned out to be connected with the fold singularities of the Fourier integral operators, which leads to   the $L^p$ boundedness of the spherical maximal means on the Heisenberg group $mathbb{H}^n$ for $nge 2$.
In this talk, we discuss about the $L^p$ boundedness of the circular maximal function on the Heisenberg group $mathbb{H}^1$. The proof is based on the the square sum estimate of the Fourier integral operators associated with the torus   arising from the vector fields of the Heisenberg group algebra.
We compare this  torus with the characteristic cone of the Euclidean space.


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  1. An introduction to hyperplane arrangements

  2. Analysis and computations of stochastic optimal control problems for stochastic PDEs

  3. Analytic torsion and mirror symmetry

  4. Anomalous diffusions and fractional order differential equations

  5. Arithmetic of elliptic curves

  6. Averaging formula for Nielsen numbers

  7. Birational Geometry of varieties with effective anti-canonical divisors

  8. Brownian motion and energy minimizing measure in negative curvature

  9. Brownian motion with darning and conformal mappings

  10. Categorical representation theory, Categorification and Khovanov-Lauda-Rouquier algebras

  11. Categorification of Donaldson-Thomas invariants

  12. Chern-Simons invariant and eta invariant for Schottky hyperbolic manifolds

  13. 08Apr
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  14. Class field theory for 3-dimensional foliated dynamical systems

  15. Classical and Quantum Probability Theory

  16. Cloaking via Change of Variables

  17. Codimension Three Conjecture

  18. Combinatorial Laplacians on Acyclic Complexes

  19. Compressible viscous Navier-Stokes flows: Corner singularity, regularity

  20. Conformal field theory and noncommutative geometry

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