DIFFER
DIFFER Publication
| Label | Value |
|---|---|
| Author | |
| Abstract |
Microtearing turbulence in an idealized pedestal scenario is found to saturate via zonal fields, while also exciting strong zonal flows; a concurrent upshift of the non-linear critical gradient is observed. The zonal flows cause electron-temperature-gradient-driven turbulence to be ameliorated. When applying resonant magnetic perturbations, the prompt charge loss off the flux surface erodes the zonal flow, leading to higher electron-scale fluxes, while leaving microtearing saturation physics unaffected. |
| Year of Publication |
2020
|
| Journal |
Nuclear Fusion
|
| Volume |
60
|
| Issue |
12
|
| Number of Pages |
124005
|
| Publisher |
IOP Publishing
|
| Type of Article |
Letter
|
| DOI | |
| PId |
498a146453d99b0bf5da5f02cd1dc4d6
|
| Alternate Journal |
Nucl. Fusion
|
| Label |
OA
|
| Attachment | |
Journal Article
|
|
| Download citation |