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Vacuum Neutral Transport Model in UEDGE for Tokamak Far Scrape-Off Layer

  • Menglong Zhao
  • , George Wilkie
  • , Andreas Holm
  • , Jasmine Jaura
  • , Marvin Rensink
  • , Thomas Rognlien
  • , Maxim Umansky
  • , Ilon Joseph

Research output: Contribution to journalArticlepeer-review

Abstract

A model for neutral transport in the far scrape-off layer (SOL) vacuum region (vacuum neutral model) has been developed and implemented in UEDGE. Free-streaming neutral trajectories between the outermost UEDGE boundary and the vessel wall are preprocessed using DEGAS2 to construct a tele-transport matrix that captures non-local neutral relocation through the vacuum. This matrix is then used in UEDGE as a non-local boundary condition for the neutral equations, preserving the robustness and convergence of the implicit solver without introducing statistical noise. Simulations of a DIII-D lower single-null configuration show that the vacuum neutral model relocates neutrals from the divertor to the upstream region, increasing the outer midplane separatrix density required for detachment onset by about (Formula presented.). However, the characteristic target temperature at detachment ((Formula presented.)) and the radiation front behavior remain unchanged.

Original languageEnglish (US)
JournalContributions to Plasma Physics
DOIs
StateAccepted/In press - 2026

All Science Journal Classification (ASJC) codes

  • Condensed Matter Physics

Keywords

  • DEGAS2
  • UEDGE
  • far-SOL vacuum region
  • non-local neutral boundary condition
  • vacuum neutral model

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