A double-layer based model of ion confinement in electron cyclotron resonance ion source

作者:Mascali D*; Neri L; Celona L; Castro G; Torrisi G; Gammino S; Sorbello G; Ciavola G
来源:Review of Scientific Instruments, 2014, 85(2): 02A511.
DOI:10.1063/1.4860652

摘要

The paper proposes a new model of ion confinement in ECRIS, which can be easily generalized to any magnetic configuration characterized by closed magnetic surfaces. Traditionally, ion confinement in B-min configurations is ascribed to a negative potential dip due to superhot electrons, adiabatically confined by the magneto-static field. However, kinetic simulations including RF heating affected by cavity modes structures indicate that high energy electrons populate just a thin slab overlapping the ECR layer, while their density drops down of more than one order of magnitude outside. Ions, instead, diffuse across the electron layer due to their high collisionality. This is the proper physical condition to establish a double-layer (DL) configuration which self-consistently originates a potential barrier; this "barrier" confines the ions inside the plasma core surrounded by the ECR surface. The paper will describe a simplified ion confinement model based on plasma density non-homogeneity and DL formation.

  • 出版日期2014-2