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  <identifier identifierType="DOI">10.7910/DVN/EMCEVC</identifier>
  <creators>
    <creator>
      <creatorName nameType="Personal">Parisi, J.F.; Guttenfelder, W.; Nelson, A.O.; Gaur, R.; Kleiner, A.; Lampert, M.; Avdeeva, G.; Berkery, J.W.; Clauser, C.; Curie, M.; Diallo, A.; Dorland, W.; Kaye, S.M.; Mcclenaghan, J.; Parra, F.I.</creatorName>
    </creator>
  </creators>
  <titles>
    <title>Kinetic-ballooning-limited pedestals in spherical tokamak plasmas</title>
  </titles>
  <publisher>Harvard Dataverse</publisher>
  <publicationYear>2025</publicationYear>
  <subjects>
    <subject>Physics</subject>
    <subject>conventional aspect ratio tokamaks</subject>
    <subject>gyrokinetic instability</subject>
    <subject>ideal-ballooning plasma instability</subject>
    <subject>kinetic-ballooning-limited pedestals</subject>
    <subject>linear gyrokinetics</subject>
    <subject>low-aspect-ratio high- β tokamak NSTX</subject>
    <subject>novel Gyrokinetic Critical Pedestal constraint</subject>
    <subject>NSTX pedestals</subject>
    <subject>pedestal width-height Diallo scaling</subject>
    <subject>self-consistent pedestal equilibrium variation</subject>
    <subject>spherical tokamak pedestals</subject>
    <subject>spherical tokamak plasmas</subject>
    <subject>width-height scaling expressions</subject>
  </subjects>
  <dates>
    <date dateType="Available">2025-06-09</date>
  </dates>
  <resourceType resourceTypeGeneral="Dataset"/>
  <sizes>
    <size>3358500</size>
  </sizes>
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    <format>application/pdf</format>
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  <version>1.0</version>
  <rightsList>
    <rights rightsURI="info:eu-repo/semantics/openAccess"/>
    <rights rightsURI="http://creativecommons.org/publicdomain/zero/1.0" rightsIdentifier="CC0-1.0" rightsIdentifierScheme="SPDX" schemeURI="https://spdx.org/licenses/" xml:lang="en">Creative Commons CC0 1.0 Universal Public Domain Dedication.</rights>
  </rightsList>
  <descriptions>
    <description descriptionType="Abstract">A theoretical model is presented that for the first time matches experimental measurements of the pedestal width-height Diallo scaling in the low-aspect-ratio high-β tokamak NSTX. Combining linear gyrokinetics with self-consistent pedestal equilibrium variation, kinetic-ballooning, rather than ideal-ballooning plasma instability, is shown to limit achievable confinement in spherical tokamak pedestals. Simulations are used to find the novel Gyrokinetic Critical Pedestal constraint, which determines the steepest pressure profile a pedestal can sustain subject to gyrokinetic instability. Gyrokinetic width-height scaling expressions for NSTX pedestals with varying density and temperature profiles are obtained. These scalings for STs depart significantly from that of conventional aspect ratio tokamaks.</description>
    <description descriptionType="Other">&lt;a href="http://library.psfc.mit.edu/catalog/reports/2020/24ja/24ja126/abstract.php"&gt;PSFC REPORT PSFC/JA-24-126&lt;/a&gt;&lt;br /&gt;&lt;br /&gt;This work was supported by the U.S. Department of Energy under Contract Numbers DE-AC02-09CH11466, DE-SC0022270, DE-SC0022272, and the Department of Energy Early Career Research Program. The United States Government retains a non-exclusive, paid-up, irrevocable, world-wide license to publish or reproduce the published form of this manuscript, or allow others to do so, for United States Government purposes.&lt;br /&gt;&lt;br /&gt;If this record does not contain the full text, then the manuscript has been embargoed by the publisher thus restricting open access for 12 to 24 months after publication.</description>
  </descriptions>
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