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Extra Form
Lecturer Masaki Kashiwara
Dept. 서울대학교/RIMS
date May 08, 2014
The original Riemann-Hilbert problem is to construct a liner ordinary differential equation with regular singularities whose solutions have  a given monodromy. Nowadays, it is formulated as a categorical equivalence of the category of regular holonomic D-modules and the category of perverse sheaves. It is a long standing problem to describe liner ordinary differential equations with irregular singularities in geometric terms.

Recently, I, with Andrea D'Agnolo, proved a Riemann-Hilbert correspondence for holonomic D-modules which are not necessarily regular (arXiv:1311.2374). In this correspondence, we have to replace the derived category of constructible sheaves with a full subcategory of ind-sheaves on the product of the base space and the real projective line. Among the main ingredients of our proof is the description of the structure of flat meromorphic connections due to Takuro Mochizuki and Kiran Kedlaya.

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  3. Mechanization of proof: from 4-Color theorem to compiler verification

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  6. Zeros of the derivatives of the Riemann zeta function

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  9. High dimensional nonlinear dynamics

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  11. Essential dimension of simple algebras

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  14. Deformation spaces of Kleinian groups and beyond

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  16. Recent progress on the Brascamp-Lieb inequality and applications

  17. Existence of positive solutions for φ-Laplacian systems

  18. 13May
    by 김수현
    in Math Colloquia

    Riemann-Hilbert correspondence for irregular holonomic D-modules

  19. Normal form reduction for unconditional well-posedness of canonical dispersive equations

  20. Random conformal geometry of Coulomb gas formalism

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