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Extra Form
Lecturer 장진우
Dept. 포항공과대학교
date Apr 06, 2023

 

 

In this colloquium talk, we study the Vlasov-Maxwell equations, a collisionless model in the field of kinetic theory. The model is a fundamental model for the dynamics of plasmas and was introduced in 1938 by Vlasov. Due to the hyperbolic nature of the system, there are still many open problems left for mathematical analysis including the global existence of classical solutions in 3D. The first part of the colloquium talk will include a brief introduction to the kinetic theory and a brief history of the mathematical analysis of the model. Then, in the rest of the talk, we introduce one kind of stability mechanism of the system, the magnetic confinement of plasmas. In the 2D annulus domain, we introduce proof for the global wellposedness of the Vlasov-Maxwell system if a huge (but finite-in-time) external magnetic potential is imposed near the boundary. The external magnetic potential well that we impose remains finite within a finite time interval and from that, we prove that the plasma never touches the boundary. In addition, we provide a sufficient condition on the magnitude of the external magnetic potential to guarantee that the plasma is confined in an annulus of the desired thickness which is slightly larger than the initial support. This is a joint-work with Robert M. Strain and Tak Kwong Wong.
Atachment
Attachment '1'
  1. Variational Methods without Nondegeneracy

  2. 11Apr
    by 김수현
    in Math Colloquia

    Vlasov-Maxwell equations and the Dynamics of Plasmas

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  5. Weak and strong well-posedness of critical and supercritical SDEs with singular coefficients

  6. Weyl character formula and Kac-Wakimoto conjecture

  7. WGAN with an Infinitely wide generator has no spurious stationary points

  8. What happens inside a black hole?

  9. What is model theory?

  10. What is Weak KAM Theory?

  11. Zeros of linear combinations of zeta functions

  12. Zeros of the derivatives of the Riemann zeta function

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  16. 원의 유리매개화에 관련된 수학

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  18. 정년퇴임 기념강연: Volume Conjecture

  19. 정년퇴임 기념강연: 회고

  20. 정년퇴임 기념강연회: 숙제

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