Kinetic-Ballooning-Bifurcation in Tokamak Pedestals Across Shaping and Aspect-Ratio

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Parisi, J. F., Nelson, A. O., Gaur, R., Kaye, S. M., Parra, F. I., Berkery, J. W., Barada, K., Clauser, C., Creely, A. J., Diallo, A., Guttenfelder, W., Hughes, J. W., Kogan, L. A., Kleiner, A., Kuang, A. Q., Lampert, M., Macwan, T., Menard, J. E., Miller, M. A.
Format: Preprint
Published: 2023
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866909162819026944
author Parisi, J. F.
Nelson, A. O.
Gaur, R.
Kaye, S. M.
Parra, F. I.
Berkery, J. W.
Barada, K.
Clauser, C.
Creely, A. J.
Diallo, A.
Guttenfelder, W.
Hughes, J. W.
Kogan, L. A.
Kleiner, A.
Kuang, A. Q.
Lampert, M.
Macwan, T.
Menard, J. E.
Miller, M. A.
author_facet Parisi, J. F.
Nelson, A. O.
Gaur, R.
Kaye, S. M.
Parra, F. I.
Berkery, J. W.
Barada, K.
Clauser, C.
Creely, A. J.
Diallo, A.
Guttenfelder, W.
Hughes, J. W.
Kogan, L. A.
Kleiner, A.
Kuang, A. Q.
Lampert, M.
Macwan, T.
Menard, J. E.
Miller, M. A.
contents We use a new gyrokinetic threshold model to predict a bifurcation in tokamak pedestal width-height scalings that depends strongly on plasma shaping and aspect-ratio. The bifurcation arises from the first and second stability properties of kinetic-ballooning-modes that yields wide and narrow pedestal branches, expanding the space of accessible pedestal widths and heights. The wide branch offers potential for edge-localized-mode-free pedestals with high core pressure. For negative triangularity, low-aspect-ratio configurations are predicted to give steeper pedestals than conventional-aspect-ratio. Both wide and narrow branches have been attained in tokamak experiments.
format Preprint
id arxiv_https___arxiv_org_abs_2312_05216
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Kinetic-Ballooning-Bifurcation in Tokamak Pedestals Across Shaping and Aspect-Ratio
Parisi, J. F.
Nelson, A. O.
Gaur, R.
Kaye, S. M.
Parra, F. I.
Berkery, J. W.
Barada, K.
Clauser, C.
Creely, A. J.
Diallo, A.
Guttenfelder, W.
Hughes, J. W.
Kogan, L. A.
Kleiner, A.
Kuang, A. Q.
Lampert, M.
Macwan, T.
Menard, J. E.
Miller, M. A.
Plasma Physics
We use a new gyrokinetic threshold model to predict a bifurcation in tokamak pedestal width-height scalings that depends strongly on plasma shaping and aspect-ratio. The bifurcation arises from the first and second stability properties of kinetic-ballooning-modes that yields wide and narrow pedestal branches, expanding the space of accessible pedestal widths and heights. The wide branch offers potential for edge-localized-mode-free pedestals with high core pressure. For negative triangularity, low-aspect-ratio configurations are predicted to give steeper pedestals than conventional-aspect-ratio. Both wide and narrow branches have been attained in tokamak experiments.
title Kinetic-Ballooning-Bifurcation in Tokamak Pedestals Across Shaping and Aspect-Ratio
topic Plasma Physics
url https://arxiv.org/abs/2312.05216