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 ...
Schematic figure of the evolution of the m = 1 mode and the local ...
The spatial structure and temporal evolution of the bursting m = 1 mode ...
The spatial structure and temporal evolution of the bursting 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 ...
(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 ...
Evolution of optimal initial disturbance in the m = 1 mode ...
Evolution of optimal initial disturbance in the m = 1 mode ...
Evolution of the frequency of the m = 1 mode of the AEI as a function ...
Evolution of the frequency of the m = 1 mode of the AEI as a function ...
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 ...
Schematic images of the longitudinal velocities v z in the m = 1 mode ...
Schematic images of the longitudinal velocities v z in the m = 1 mode ...
Time evolution of the l = m = 1 mode of Φ2 of run v1K2 m000, i.e., a ...
Time evolution of the l = m = 1 mode of Φ2 of run v1K2 m000, i.e., a ...
Three-dimensional perspectives of a and b isosurfaces of the m 1 mode ...
Three-dimensional perspectives of a and b isosurfaces of the m 1 mode ...
Time evolution of the l = m = 1 mode of Φ2 of run v1K2 m000, i.e., a ...
Time evolution of the l = m = 1 mode of Φ2 of run v1K2 m000, i.e., a ...
Evolution of optimal initial disturbance in the m = 1 mode ...
Evolution of optimal initial disturbance in the m = 1 mode ...
(a) Phase and (b) attenuation constant of the m = 1 mode vs normalized ...
(a) Phase and (b) attenuation constant of the m = 1 mode vs normalized ...
Time evolution of the l = m = 1 mode of Φ2 of run v1K2 m000, i.e., a ...
Time evolution of the l = m = 1 mode of Φ2 of run v1K2 m000, i.e., a ...
(a) Phase and (b) attenuation constant of the m = 1 mode vs normalized ...
(a) Phase and (b) attenuation constant of the m = 1 mode vs normalized ...
(a) Phase and (b) attenuation constant of the m = 1 mode vs normalized ...
(a) Phase and (b) attenuation constant of the m = 1 mode vs normalized ...
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 ...
Illustration of the evolution of the island (blue color) and m=1 mode ...
Illustration of the evolution of the island (blue color) and m=1 mode ...
The m = 1 mode structures of long-lived mode obtained through ...
The m = 1 mode structures of long-lived mode obtained through ...
-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 ...
The m = 1 mode structures of long-lived mode obtained through ...
The m = 1 mode structures of long-lived mode obtained through ...
Kinetic energy of the m = 1 mode versus time for various Γ. Note the ...
Kinetic energy of the m = 1 mode versus time for various Γ. Note the ...
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 ...
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 ...
͑ 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 ...
Plot for the m = 1 mode of S m with respect to ρ. S (ef f ) 1 , S reg,I ...
Plot for the m = 1 mode of S m with respect to ρ. S (ef f ) 1 , S reg,I ...
Kinetic energy of the m = 1 mode versus time for various Γ. Note the ...
Kinetic energy of the m = 1 mode versus time for various Γ. Note the ...
(a) Comparison of the m = 1 mode activity at various ECR locations ...
(a) Comparison of the m = 1 mode activity at various ECR locations ...
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 ...
͑ 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 ...
Sketches of a) m = 1 and e) m = 2 hybrid modes. The current ...
Sketches of a) m = 1 and e) m = 2 hybrid modes. The current ...
The m = 1 mode structures of long-lived mode obtained through ...
The m = 1 mode structures of long-lived mode obtained through ...
͑ a ͒ The change of the amplitude of the m ϭ 1 mode after applying ...
͑ a ͒ The change of the amplitude of the m ϭ 1 mode after applying ...
Schematic representation of the l = 2, m = 1, ¢ = m 0 mode responsible ...
Schematic representation of the l = 2, m = 1, ¢ = m 0 mode responsible ...

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