Time-resolved biphase signatures of quadratic nonlinearity observed in coupled Alfvén eigenmodes on the DIII-D tokamak

Author:

Riggs G.1ORCID,Koepke M.1ORCID,Heidbrink W.2ORCID,Van Zeeland M. A.3ORCID,Spong D.4ORCID

Affiliation:

1. Department of Physics and Astronomy, West Virginia University 1 , Morgantown, West Virginia 26505, USA

2. Department of Physics and Astronomy, University of California, Irvine 2 , Irvine, California 92697, USA

3. General Atomics 3 , San Diego, California 92186-5608, USA

4. Oak Ridge National Laboratory 4 , Oak Ridge, Tennessee 37831-6169, USA

Abstract

We report the detection of nonstationary quadratic coupling between toroidicity-induced Alfvén eigenmodes (TAEs) on sub-millisecond time scales. Identification of phase coherency between multiple TAEs and nonlinearly generated modes is facilitated by wavelet-based bicoherence analysis of time-series from inductive coils, taken from a DIII-D discharge heated by neutral beam injection (NBI). Characterization of nonlinear three-wave interaction is inferred by stationary local bispectrum phase (biphase) and confirmed via bandpass filtering. Biphase dynamics associated with prominent bispectral features are well-resolved in time and consistent with transient quadratic coupling. Onset and duration of nonlinearity are correlated with enhanced amplitude of participating TAEs; coincident changes in amplitude are observed for modes at difference frequency |fTAE,1−fTAE,2|.

Funder

Office of Science

Fusion Energy Sciences

U.S. Department of Energy

Publisher

AIP Publishing

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