Observation of stationary filaments with resonant magnetic perturbations in NSTX

The application of resonant magnetic perturbations (RMPs) induces striated heat fluxes on the divertor plate in tokamaks. These striated heat fluxes were previously considered strike point splitting by the intersection between the divertor and predicted magnetic lobe structures. Recently, the existe...

Full description

Bibliographic Details
Published in:Nuclear Fusion
Main Authors: K.F. Gan, E.D. Fredrickson, J.W. Berkery, S. Munaretto, A. Kleiner, M. Lampert, J.-K. Park, R. Maingi, A.G. McLean, T.K. Gray, B.D. Wirth
Format: Article
Language:English
Published: IOP Publishing 2025-01-01
Subjects:
Online Access:https://doi.org/10.1088/1741-4326/adf4f8
_version_ 1849513196837142528
author K.F. Gan
E.D. Fredrickson
J.W. Berkery
S. Munaretto
A. Kleiner
M. Lampert
J.-K. Park
R. Maingi
A.G. McLean
T.K. Gray
B.D. Wirth
author_facet K.F. Gan
E.D. Fredrickson
J.W. Berkery
S. Munaretto
A. Kleiner
M. Lampert
J.-K. Park
R. Maingi
A.G. McLean
T.K. Gray
B.D. Wirth
author_sort K.F. Gan
collection DOAJ
container_title Nuclear Fusion
description The application of resonant magnetic perturbations (RMPs) induces striated heat fluxes on the divertor plate in tokamaks. These striated heat fluxes were previously considered strike point splitting by the intersection between the divertor and predicted magnetic lobe structures. Recently, the existence of stationary 3D filaments has been observed for the first time in National Spherical Torus Experiment (NSTX) plasmas with toroidal mode number n = 3 RMPs. Magnetic field line tracing of these filaments from the midplane to the divertor is consistent with the quantity and the radial and toroidal location of striated heat fluxes observed on the divertor. This study suggests that divertor striated heat flux patterns are linked to these stationary filaments rather than to strike point splitting or magnetic lobe structures for NSTX. This finding will help guide future efforts to understand the heat flux striations in NSTX with RMPs in order to control and reduce the divertor peak heat flux.
format Article
id doaj-art-ecffdf9149c741ea8838cefce41e9c19
institution Directory of Open Access Journals
issn 0029-5515
language English
publishDate 2025-01-01
publisher IOP Publishing
record_format Article
spelling doaj-art-ecffdf9149c741ea8838cefce41e9c192025-08-20T02:56:40ZengIOP PublishingNuclear Fusion0029-55152025-01-0165909600410.1088/1741-4326/adf4f8Observation of stationary filaments with resonant magnetic perturbations in NSTXK.F. Gan0E.D. Fredrickson1J.W. Berkery2https://orcid.org/0000-0002-8062-3210S. Munaretto3https://orcid.org/0000-0003-1465-0971A. Kleiner4https://orcid.org/0000-0002-5800-8027M. Lampert5https://orcid.org/0000-0002-8462-8799J.-K. Park6https://orcid.org/0000-0003-2419-8667R. Maingi7https://orcid.org/0000-0003-1238-8121A.G. McLean8T.K. Gray9B.D. Wirth10https://orcid.org/0000-0002-0395-0285University of Tennessee , Knoxville, TN, United States of AmericaPrinceton Plasma Physics Laboratory , Princeton, NJ, United States of AmericaPrinceton Plasma Physics Laboratory , Princeton, NJ, United States of AmericaPrinceton Plasma Physics Laboratory , Princeton, NJ, United States of AmericaPrinceton Plasma Physics Laboratory , Princeton, NJ, United States of AmericaPrinceton Plasma Physics Laboratory , Princeton, NJ, United States of AmericaPrinceton Plasma Physics Laboratory , Princeton, NJ, United States of America; Seoul National University , Seoul 08826, Korea, Republic OfPrinceton Plasma Physics Laboratory , Princeton, NJ, United States of AmericaLawrence Livermore National Laboratory , Livermore, CA 94550, United States of AmericaOak Ridge National Laboratory , Oak Ridge, TN, United States of AmericaUniversity of Tennessee , Knoxville, TN, United States of America; Oak Ridge National Laboratory , Oak Ridge, TN, United States of AmericaThe application of resonant magnetic perturbations (RMPs) induces striated heat fluxes on the divertor plate in tokamaks. These striated heat fluxes were previously considered strike point splitting by the intersection between the divertor and predicted magnetic lobe structures. Recently, the existence of stationary 3D filaments has been observed for the first time in National Spherical Torus Experiment (NSTX) plasmas with toroidal mode number n = 3 RMPs. Magnetic field line tracing of these filaments from the midplane to the divertor is consistent with the quantity and the radial and toroidal location of striated heat fluxes observed on the divertor. This study suggests that divertor striated heat flux patterns are linked to these stationary filaments rather than to strike point splitting or magnetic lobe structures for NSTX. This finding will help guide future efforts to understand the heat flux striations in NSTX with RMPs in order to control and reduce the divertor peak heat flux.https://doi.org/10.1088/1741-4326/adf4f8tokamaksfilamentsdivertor heat fluxRMPs
spellingShingle K.F. Gan
E.D. Fredrickson
J.W. Berkery
S. Munaretto
A. Kleiner
M. Lampert
J.-K. Park
R. Maingi
A.G. McLean
T.K. Gray
B.D. Wirth
Observation of stationary filaments with resonant magnetic perturbations in NSTX
tokamaks
filaments
divertor heat flux
RMPs
title Observation of stationary filaments with resonant magnetic perturbations in NSTX
title_full Observation of stationary filaments with resonant magnetic perturbations in NSTX
title_fullStr Observation of stationary filaments with resonant magnetic perturbations in NSTX
title_full_unstemmed Observation of stationary filaments with resonant magnetic perturbations in NSTX
title_short Observation of stationary filaments with resonant magnetic perturbations in NSTX
title_sort observation of stationary filaments with resonant magnetic perturbations in nstx
topic tokamaks
filaments
divertor heat flux
RMPs
url https://doi.org/10.1088/1741-4326/adf4f8
work_keys_str_mv AT kfgan observationofstationaryfilamentswithresonantmagneticperturbationsinnstx
AT edfredrickson observationofstationaryfilamentswithresonantmagneticperturbationsinnstx
AT jwberkery observationofstationaryfilamentswithresonantmagneticperturbationsinnstx
AT smunaretto observationofstationaryfilamentswithresonantmagneticperturbationsinnstx
AT akleiner observationofstationaryfilamentswithresonantmagneticperturbationsinnstx
AT mlampert observationofstationaryfilamentswithresonantmagneticperturbationsinnstx
AT jkpark observationofstationaryfilamentswithresonantmagneticperturbationsinnstx
AT rmaingi observationofstationaryfilamentswithresonantmagneticperturbationsinnstx
AT agmclean observationofstationaryfilamentswithresonantmagneticperturbationsinnstx
AT tkgray observationofstationaryfilamentswithresonantmagneticperturbationsinnstx
AT bdwirth observationofstationaryfilamentswithresonantmagneticperturbationsinnstx