Snapshots From The Oscillatorily Unstable Evolution Of An M 1 Mode

Snapshots from the oscillatorily unstable evolution of an m = 1 mode ...
Snapshots from the oscillatorily unstable evolution of an m = 1 mode ...
Snapshots from the oscillatorily unstable evolution of an m = 1 mode ...
Snapshots from the oscillatorily unstable evolution of an m = 1 mode ...
The crossover of the most unstable mode of m = 1 from the regime of |ω ...
The crossover of the most unstable mode of m = 1 from the regime of |ω ...
The crossover of the most unstable mode of m = 1 from the regime of |ω ...
The crossover of the most unstable mode of m = 1 from the regime of |ω ...
(Color online). Long-term evolution of the m = 1 mode in Case (T-1 ...
(Color online). Long-term evolution of the m = 1 mode in Case (T-1 ...
The spatial structure and temporal evolution of the bursting m = 1 mode ...
The spatial structure and temporal evolution of the bursting m = 1 mode ...
Schematic figure of the evolution of the m = 1 mode and the local ...
Schematic figure of the evolution of the m = 1 mode and the local ...
The most unstable mode m 1 = as a function of r + for = 1, 2, 3, 4 ...
The most unstable mode m 1 = as a function of r + for = 1, 2, 3, 4 ...
Density snapshots of the evolution of an unstable 2D radially-demixed ...
Density snapshots of the evolution of an unstable 2D radially-demixed ...
Snapshots in one period of the most unstable mode calculated from the ...
Snapshots in one period of the most unstable mode calculated from the ...
Linear resistive scaling laws of the m = n = 1 most unstable mode (a ...
Linear resistive scaling laws of the m = n = 1 most unstable mode (a ...
Density snapshots of the evolution of an unstable 2D radially-demixed ...
Density snapshots of the evolution of an unstable 2D radially-demixed ...
-Power mode evolution of m = 1 non-axisymmetric mode for the models ...
-Power mode evolution of m = 1 non-axisymmetric mode for the models ...
The shape functions of the dominant unstable m = 1 mode at ω = 2.48 ...
The shape functions of the dominant unstable m = 1 mode at ω = 2.48 ...
Snapshots showing the evolution of the density of an unstable S=0 ...
Snapshots showing the evolution of the density of an unstable S=0 ...
Real and imaginary parts of the dominant unstable dipole mode (m = 1 ...
Real and imaginary parts of the dominant unstable dipole mode (m = 1 ...
The m = 1 mode structures of long-lived mode obtained through ...
The m = 1 mode structures of long-lived mode obtained through ...
The temporal evolution of the magnetic energy of the main m = 1 modes ...
The temporal evolution of the magnetic energy of the main m = 1 modes ...
The m = 1 mode structures of long-lived mode obtained through ...
The m = 1 mode structures of long-lived mode obtained through ...
Time evolution of the amplitude |D 1 | of the nonaxisymmetric m = 1 ...
Time evolution of the amplitude |D 1 | of the nonaxisymmetric m = 1 ...
Frequency dependence of normalized patterns of the m = 0 mode and m = 1 ...
Frequency dependence of normalized patterns of the m = 0 mode and m = 1 ...
The m = 1 mode structures of long-lived mode obtained through ...
The m = 1 mode structures of long-lived mode obtained through ...
Upper panel: time evolution of the three states from (a) M = 0, (b) M ...
Upper panel: time evolution of the three states from (a) M = 0, (b) M ...
-Nonlinear evolution of the energy in the m ¼ 1 modes for ! 0 ¼ 1 À ...
-Nonlinear evolution of the energy in the m ¼ 1 modes for ! 0 ¼ 1 À ...
Computation of an unstable mode in the single-wave model for γ = −1 and ...
Computation of an unstable mode in the single-wave model for γ = −1 and ...
Oscilloscope traces of the voltages for each node for the m ϭ 1 mode ...
Oscilloscope traces of the voltages for each node for the m ϭ 1 mode ...
Mode amplitude of dominant unstable m = 1 RWMs in a standard discharge ...
Mode amplitude of dominant unstable m = 1 RWMs in a standard discharge ...
Evolution of the l = 1, m = 0 (left) and l = m = 1 (right) multipoles ...
Evolution of the l = 1, m = 0 (left) and l = m = 1 (right) multipoles ...
The trace of an unstable periodic orbit of (5.4) for m = n = 1, λ = −1 ...
The trace of an unstable periodic orbit of (5.4) for m = n = 1, λ = −1 ...
Formation and evolution of an m ϭ 1 structure after pellet injection at ...
Formation and evolution of an m ϭ 1 structure after pellet injection at ...
͑ Color ͒ Time evolution of the magnetic m ϭ 1 modes measured with a ...
͑ Color ͒ Time evolution of the magnetic m ϭ 1 modes measured with a ...
Time evolution of unstable modes in the coordinate system of Fig. 1 ...
Time evolution of unstable modes in the coordinate system of Fig. 1 ...
Spontaneous rotation of an m =1 mode (black): the m =2 mode (red) is ...
Spontaneous rotation of an m =1 mode (black): the m =2 mode (red) is ...
Time evolution of the frequencies of the oscillations with m = 1 and m ...
Time evolution of the frequencies of the oscillations with m = 1 and m ...
(a) Dispersion curves of unstable ( m = 1 ) MHD mode propagating in a ...
(a) Dispersion curves of unstable ( m = 1 ) MHD mode propagating in a ...
Comparison of the m = 1 mode growth rate in simulation and experiment a ...
Comparison of the m = 1 mode growth rate in simulation and experiment a ...

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