A General Way To Confined Stationary Vlasov-Poisson Plasma Configurations

We address the existence of stationary solutions of the Vlasov- Poisson system on a domain Ω ⊂ R3 describing a high-temperature plasma which due to the influence of an external magnetic field is spatially confined to a subregion of Q. In a first part we provide such an existence result for a generalized system of Vlasov-Poisson type and investigate the relation between the strength of the external magnetic field, the sharpness of the confinement and the amount of plasma that is confined measured in terms of the total charges. The key tools here are the method of sub-/supersolutions and the use of first integrals in combination with cutoff functions. In a second part we apply these general results to the usual Vlasov-Poisson equation in three different settings: the infinite and finite cylinder, as well as domains with toroidal symmetry. This way we prove the existence of stationary solutions corresponding to a two-component plasma confined in a Mirror trap, as well as a Tokamak © American Institute of Mathematical Sciences Volume 14, Number 2, April 2021

Авторы
Belyaeva Y.O. 1 , Gebhard B.2 , Skubachevskii A.L. 1
Издательство
American Institute of Mathematical Sciences
Номер выпуска
2
Язык
Английский
Страницы
257-282
Статус
Опубликовано
Том
14
Год
2021
Организации
  • 1 Rudn University, 6,Mikluhko-Maklaya str, Moscow, 117198, Russian Federation
  • 2 Universitat Leipzig, Augustusplatz 10, Leipzig, 04109, Germany
Ключевые слова
magnetic confinement; stationary solutions; sub-/supersolutions.; Tokamak; Vlasov-Poisson
Цитировать
Поделиться

Другие записи