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Correlations between quasi-coherent fluctuations and the pedestal evolution during the inter-edge localized modes phase on DIII-D

Publication ,  Journal Article
Diallo, A; Groebner, RJ; Rhodes, TL; Battaglia, DJ; Smith, DR; Osborne, TH; Canik, JM; Guttenfelder, W; Snyder, PB
Published in: Physics of Plasmas
May 1, 2015

Direct measurements of the pedestal recovery during an edge-localized mode cycle provide evidence that quasi-coherent fluctuations (QCFs) play a role in the inter-ELM pedestal dynamics. Using fast Thomson scattering measurements, the pedestal density and temperature evolutions are probed on sub-millisecond time scales to show a fast recovery of the density gradient compared to the temperature gradient. The temperature gradient appears to provide a drive for the onset of quasi-coherent fluctuations (as measured with the magnetic probe and the density diagnostics) localized in the pedestal. The amplitude evolution of these QCFs tracks the temperature gradient evolution including its saturation. Such correlation suggests that these QCFs play a key role in limiting the pedestal temperature gradient. The saturation of the QCFs coincides with the pressure gradient reaching the kinetic-ballooning mode (KBM) critical gradient as predicted by EPED1. Furthermore, linear microinstability analysis using GS2 indicates that the steep gradient is near the KBM threshold. Thus, the modeling and the observations together suggest that QCFs are consistent with dominant KBMs, although microtearing cannot be excluded as subdominant.

Duke Scholars

Published In

Physics of Plasmas

DOI

EISSN

1089-7674

ISSN

1070-664X

Publication Date

May 1, 2015

Volume

22

Issue

5

Related Subject Headings

  • Fluids & Plasmas
  • 5109 Space sciences
  • 5106 Nuclear and plasma physics
  • 0203 Classical Physics
  • 0202 Atomic, Molecular, Nuclear, Particle and Plasma Physics
  • 0201 Astronomical and Space Sciences
 

Citation

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Diallo, A., Groebner, R. J., Rhodes, T. L., Battaglia, D. J., Smith, D. R., Osborne, T. H., … Snyder, P. B. (2015). Correlations between quasi-coherent fluctuations and the pedestal evolution during the inter-edge localized modes phase on DIII-D. Physics of Plasmas, 22(5). https://doi.org/10.1063/1.4921148
Diallo, A., R. J. Groebner, T. L. Rhodes, D. J. Battaglia, D. R. Smith, T. H. Osborne, J. M. Canik, W. Guttenfelder, and P. B. Snyder. “Correlations between quasi-coherent fluctuations and the pedestal evolution during the inter-edge localized modes phase on DIII-D.” Physics of Plasmas 22, no. 5 (May 1, 2015). https://doi.org/10.1063/1.4921148.
Diallo A, Groebner RJ, Rhodes TL, Battaglia DJ, Smith DR, Osborne TH, et al. Correlations between quasi-coherent fluctuations and the pedestal evolution during the inter-edge localized modes phase on DIII-D. Physics of Plasmas. 2015 May 1;22(5).
Diallo, A., et al. “Correlations between quasi-coherent fluctuations and the pedestal evolution during the inter-edge localized modes phase on DIII-D.” Physics of Plasmas, vol. 22, no. 5, May 2015. Scopus, doi:10.1063/1.4921148.
Diallo A, Groebner RJ, Rhodes TL, Battaglia DJ, Smith DR, Osborne TH, Canik JM, Guttenfelder W, Snyder PB. Correlations between quasi-coherent fluctuations and the pedestal evolution during the inter-edge localized modes phase on DIII-D. Physics of Plasmas. 2015 May 1;22(5).

Published In

Physics of Plasmas

DOI

EISSN

1089-7674

ISSN

1070-664X

Publication Date

May 1, 2015

Volume

22

Issue

5

Related Subject Headings

  • Fluids & Plasmas
  • 5109 Space sciences
  • 5106 Nuclear and plasma physics
  • 0203 Classical Physics
  • 0202 Atomic, Molecular, Nuclear, Particle and Plasma Physics
  • 0201 Astronomical and Space Sciences