Revision bfbc2069da2a5e1ef1ff212d4e628afecd59afb9 (click the page title to view the current version)

TrainingCourses/FTTF/2022-2023/Andres/index_en

Changes from bfbc2069da2a5e1ef1ff212d4e628afecd59afb9 to f8559f287c8082b2a6013a6b8c37812bc5d5f1f7

---
format:markdown
format:latex
...

Tokamak GOLEM project web
\section{Introduction}

\subsection{Aims}

\begin{itemize}
 \item Investigation of RE generation mechanisms.
 \item Investigation of RE mitigation mechanisms (Working gas, mitigation during shot termination ( prepare in advance ) )
 \item Plasma resistivity as $f:REs \rightarrow \sigma$ (does $kT^{-3/2}$ holds?) ($j\leq n \cdot e \cdot c$)
 \item High vs low energy REs (REs popullation vs energy)
\end{itemize}

\section{Aparatus}

Possible diagnostics:
\begin{enumerate}
 \item Scintillation detector plus photo-multiplier (NaI(Tl), YAP(Ce)). Hits / deposited energy.
 \item PH32-based detector (Strip detector).
 \item Timepix (SXR + HXR? Timepix(3?) CdTe?)
 \item Dosimeters
 \item Cherenkov Detector?
 \item Spectrometer(s)
\end{enumerate}

Possible parameters:
\begin{enumerate}
 \item Pressure (keep low)
 \item Electric field
 \item B field
 \item Working gas ( after n shots, maybe after glow discharge session )
 \item Stabilization System (sudden field variations may lead to enhancement of RE population).
\end{enumerate}