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February 28, 2026Journal of Plasma Physics0 citationsOpen Access

Detecting shearless phase-space transport barriers in global gyrokinetic turbulence simulations with test particle map models

NCNorman Ming-Chen CaoHZHongxuan ZhuGGGabriel Cardoso Grime

Key Points

  • This research aims to understand how shearless regions in plasma dynamics can form barriers to turbulent transport.
  • Utilized a global total-f gyrokinetic particle-in-cell code XGC for electrostatic simulations.
  • Isolated quasi-coherent fluctuations localized to zonal jets.
  • Constructed a map model for the Lagrangian dynamics of gyrokinetic test particles.
  • Identified shearless invariant tori in the dynamical model.
  • Shearless regions with non-zero flow curvature form zonal jets that act as transport barriers.
  • Verified that shearless tori serve as partial barriers to particle transport and turbulence.
  • Eddy detachment events create structures akin to those in oceanic jets, facilitating transport across barriers.

Abstract

In magnetically confined fusion plasmas, the role played by zonal E B flow shear layers in the suppression of turbulent transport is relatively well understood. However, less is understood about the role played by the weak shear regions that arise in the non-monotonic radial electric field profiles often associated with these shear layers. In electrostatic simulations from the global total- f gyrokinetic particle-in-cell code XGC, we demonstrate how shearless regions with non-zero flow curvature form zonal ‘jets’ that, in conjunction with neighbouring regions of shear, can act as robust barriers to particle transport and turbulence spreading. By isolating quasi-coherent fluctuations radially localised to the zonal jets, we construct a map model for the Lagrangian dynamics of gyrokinetic test particles in the presence of drift waves. We identify the presence of shearless invariant tori in this model and verify that these tori act as partial phase-space transport barriers in the simulations. We also demonstrate how avalanches impinging on these shearless tori cause eddy detachment events that form ‘cold/warm core ring’ structures analogous to those found in oceanic jets, facilitating transport across the barriers without destroying them completely. We discuss how shearless tori may generically arise from tertiary instabilities or other types of discrete eigenmodes, suggesting their potential relevance to broader classes of turbulent fluctuations.

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Cite This Study

Cao et al. (2026) studied this question.

synapsesocial.com/papers/69a286da0a974eb0d3c02131https://doi.org/10.1017/s0022377826101305
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