Extended electron tails in electrostatic microinstabilities and the nonadiabatic response of passing electrons
Plasma Physics and Controlled Fusion IOP Publishing 64:5 (2022) 055004-055004
Abstract:
Interpreting radial correlation Doppler reflectometry using gyrokinetic simulations
Plasma Physics and Controlled Fusion 64:5 (2022)
Abstract:
A linear response, local model for the DBS amplitude applied to gyrokinetic simulations shows that radial correlation Doppler reflectometry measurements (RCDR, Schirmer et al 2007 Plasma Phys. Control. Fusion 49 1019) are not sensitive to the average turbulence radial correlation length, but to a correlation length that depends on the binormal wavenumber k鈯 selected by the Doppler backscattering (DBS) signal. Nonlinear gyrokinetic simulations show that the turbulence naturally exhibits a nonseparable power law spectrum in wavenumber space, leading to a power law dependence of the radial correlation length with binormal wavenumber lr鈭糃k鈯-伪(伪鈮1) which agrees with the inverse proportionality relationship between the measured lr and k鈯 observed in experiments (Fern谩ndez-Marina et al 2014 Nucl. Fusion 54 072001). This new insight indicates that RCDR characterizes the eddy aspect ratio in the perpendicular plane to the magnetic field. It also motivates future use of a nonseparable turbulent spectrum to quantitatively interpret RCDR and potentially other turbulence diagnostics. The radial correlation length is only measurable when the radial resolution at the cutoff location Wn satisfies Wn鈮猯r, while the measurement becomes dominated by Wn for Wn鈮玪r . This suggests that lr is likely to be inaccessible for electron-scale DBS measurements (k鈯ハ乻>1 ). The effect of Wn on ion-scale radial correlation lengths could be nonnegligible.Interpreting radial correlation Doppler reflectometry using gyrokinetic simulations
Plasma Physics and Controlled Fusion IOP Publishing 64:5 (2022) 055019
Magnetic massive stars from stellar mergers
Proceedings of the International Astronomical Union Cambridge University Press (CUP) 18:S361 (2022) 212-217
Spontaneous magnetization of collisionless plasma.
Proceedings of the National Academy of Sciences of the United States of America 119:19 (2022) e2119831119