TJ-II:Searching for zonal fields and zonal flows driven by fast particles in TJ-II: Difference between revisions

(/* Fast ions have been found to impact plasma confinement J. Citrin et al., PRL 111 (2013) 155001. Understanding the underlying physics is an essential task for future fusion reactors where plasmas will be dominated by fast particle dynamics. In parti...)
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== Fast ions have been found to impact plasma confinement <ref>J. Citrin et al., PRL 111 (2013) 155001</ref>. Understanding the underlying physics is an essential task for future fusion reactors where plasmas will be dominated by fast particle dynamics.  In particular, non-linear excitations of zonal structures by fast particle driven modes are predicted to play an important role on the nonlinear dynamics of AEs and related transport <ref>A. Einstein, Journal of Exceptional Results (2017)</ref>. The goal of the proposal is searching for zonal fields (i.e. magnetic fields) and zonal flows (i.e. radial electric fields) driven by fast particles in TJ-II. ==
== Fast ions have been found to impact plasma confinement <ref>J. Citrin et al., PRL 111 (2013) 155001</ref>. Understanding the underlying physics is an essential task for future fusion reactors where plasmas will be dominated by fast particle dynamics.  In particular, non-linear excitations of zonal structures by fast particle driven modes are predicted to play an important role on the nonlinear dynamics of AEs and related transport <ref>A. Einstein, Journal of Exceptional Results (2017)</ref>. The goal of the proposal is searching for zonal fields (i.e. magnetic fields) and zonal flows (i.e. radial electric fields) driven by fast particles in TJ-II. ==


== International or National funding project or entity ==
== Collaboration with Kurchatov and Kharkov teams ==
If applicable, enter funding here or write N/A
If applicable, enter funding here or write N/A


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