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Extra Form
Lecturer 오용근
Dept. University of Wisconsin
date Nov 26, 2009
In this lecture, I will convey subtle interplay between dynamics of Hamiltonian flows and La-grangian intersection theory via the analytic theory of Floer homology in symplectic geometry. I will explain how Floer homology theory (`closed string version') extracts some Morse theoretic invariants, so called `spectral invariants' of Hamiltonian flows which in turn leads to Entov-Polterovich's construction of partial symplectic quasi-states which detect intersection property of certain coisotropic objects. We then relate this study to the study of intersection property of Lagrangian fibers of toric manifolds and its Landau-Ginzburg-type potential carried out by Fukaya, Ohta, Ono and myself via Lagrangian Floer theory (`open string version'). If time permits, I will mention some implication of this study on the simpleness question of the area-preserving homeomorphism group of the two-sphere (and of the two-disc) in dynamical systems.
Atachment
Attachment '1'
  1. Variational Methods without Nondegeneracy

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

  3. Brownian motion with darning and conformal mappings

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

  5. 학부생을 위한 강연회: 통신의 New Trend, 그리고 Big Data

  6. Cloaking via Change of Variables

  7. How to solve linear systems in practice

  8. Spectral Analysis for the Anomalous Localized Resonance by Plasmonic Structures

  9. Conformal field theory and noncommutative geometry

  10. 극소곡면의 등주부등식

  11. Topology of configuration spaces on graphs

  12. 학부생을 위한 강연회: What is the algebraic number theory?

  13. 정년퇴임 기념강연회: 숙제

  14. Integer partitions, q-series, and Modular forms

  15. Root multiplicities of hyperbolic Kac-Moody algebras and Fourier coefficients of modular forms

  16. 학부생을 위한 강연: 브라질과 프랑스는 왜 축구를 잘 할까? - 경제와 수학과 축구와 법률

  17. A new view of Fokker-Planck equations in finite and Infinite dimensional spaces

  18. 원의 유리매개화에 관련된 수학

  19. Introduction to Non-Positively Curved Groups

  20. Noncommutative Geometry. Quantum Space-Time and Diffeomorphism Invariant Geometry

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