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February 23, 2026Plasma Physics Reports0 citations

Studies of Characteristics of Poloidal Correlation Reflectometry Using Synthetic Diagnostics

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SGS. D. GolikovaEGE. Z. GusakovMIM. A. Irzak

Key Points

  • The study aims to analyze poloidal correlation fluctuation reflectometry diagnostics in tokamak plasma using simulations.
  • Conducted numerical simulations using fast synthetic diagnostics based on linear scattering theory.
  • Utilized full-wave calculations for electric fields of microwaves in plasma.
  • Analyzed scattering signals from density fluctuations using the reciprocity theorem and gyrokinetic calculations.
  • Compared frequency spectra of synthetic scattering signals with gyrokinetic data.
  • Calculated radial profiles of poloidal phase velocity and compared with E x B drift velocities.
  • Synthetic diagnostics revealed significant characteristics of scattering signals in plasma.
  • Frequency spectra showed alignment with gyrokinetic density fluctuation data.
  • Profiles of phase velocity yielded comparable results to calculated profiles from gyrokinetic distributions.

Abstract

The characteristics of poloidal correlation fluctuation reflectometry diagnostics for a small-sized tokamak were studied using numerical simulations. The simulations were conducted using the method of fast synthetic diagnostics based on the linear (Born) scattering theory and including full-wave calculations of electric fields of microwaves in unperturbed plasma. The signal of microwaves scattering by density fluctuations was calculated in accordance with the reciprocity theorem using the data from gyrokinetic calculations of the space-time distribution of these fluctuations in plasma of the FT-2 tokamak. The frequency spectra of the synthetic scattering signals were compared with the spectra of density fluctuations in the scattering region obtained from gyrokinetic calculations. From synthetic scattering signals, radial profiles of the poloidal phase velocity of fluctuations were calculated and compared with similar profiles calculated directly from the gyrokinetic distributions of density fluctuations, as well as with the profiles of the poloidal E × B drift velocity of plasma.

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Cite This Study

Golikova et al. (2025) studied this question.

synapsesocial.com/papers/699ba08472792ae9fd8703behttps://doi.org/10.1134/s1063780x25603189
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