APS Logo

Early internal detection of tearing modes in high-q<sub>min</sub> DIII-D plasmas and correlation with ideal and resistive stability calculations

POSTER

Abstract

Faraday-effect polarimetry via the Radial Interferometer Polarimeter (RIP) detects internal magnetic fluctuations in high-qmin DIII-D plasmas up to 300 ms before the edge magnetic sensing coils. In these qmin > 1.4 plasmas, the goal of achieving g high ??N is often limited by the emergence of tearing modes (TM). RIP measures the line integral of magnetic fluctuations across the plasma center, enabling detection of n > 1, core-resonant modes whose narrow eigenfunctions render them challenging to detect at the edge. The DCON ideal stability code was used to calculate ideal-wall kink-mode ??N limits for different n as a proxy for linear TM stability. For these plasmas, the ??N limit for the n = 3 mode is generally the lowest, and is detected on RIP before the n = 2 or 1 modes. In one example, a 6/3 mode (resonant at the q = 2 surface) occurs initially without 4/2 or 2/1 modes. This might be consistent with the lower ??N limit for the n = 3 kink mode. However, resistive DCON shows that Delta' for the 6/3 TM is initially near zero and only increases later, after the equilibrium becomes ideally unstable, indicating that at initial detection, the mode may not be a classical TM.

Presenters

  • Mihir D Pandya

    University of Wisconsin - Madison

Authors

  • Mihir D Pandya

    University of Wisconsin - Madison

  • Brett E Chapman

    University of Wisconsin - Madison, UW-Madison

  • Karsten J McCollam

    University of Wisconsin - Madison, University of Wisconsin-Madison

  • John S Sarff

    University of Wisconsin - Madison

  • Brian S Victor

    Lawrence Livermore Natl Lab

  • Dylan P Brennan

    Princeton University

  • Jie Chen

    University of California, Los Angeles

  • David L Brower

    University of California, Los Angeles

  • Weixing Ding

    University of Science and Technology of China

  • Christopher T Holcomb

    Lawrence Livermore Natl Lab, Lawrence Livermore National Laboratory

  • Nikolas C Logan

    Lawrence Livermore Natl Lab, LLNL

  • Ted J Strait

    General Atomics, General Atomics - San Diego, GA

  • Rachel A Myers

    University of Wisconsin - Madison, Univ. Wisconsin, Madison