Hole Equilibria in a Quasi-Cold Plasma
スポンサーリンク
概要
- 論文の詳細を見る
The present paper is a theoretical investigation of hole equilibria in phase space, such as being observed in numerical exoeriments on the two stream instability of counterstreaming, equal, electron-beams in a background of fixed ions. It is assumed that the thermal velocity of the plasma surrounding holes in ohase space is suffciently small. The equilibria are cassifed into two groups: Quasi-cold hole equilibria, and dressed hole equilibria. The former equilibria are characterized by the smallness of the shielding distnce that is the distance between adjacent holes required the charg of holes, whilst in the latter, adjacent holes are separated by long shielding distance even for sufficiently small thermal velocity.
- 社団法人日本物理学会の論文
- 1971-12-05
著者
-
TANIUTI Tosiya
Department of Engineering,Natural Science-Mathematics,Chubu University
-
Taniuti Tosiya
Department Of Engineering Natural Science-mathematics Chubu University
-
Watanabe Tsuguhiro
Institute For Fusion Theory Hiroshima University
-
KAKO Masashi
Institute of Plasma Physics, Nagoya University
-
Kako Masashi
Institute Of Plasma Physics Nagoya University
関連論文
- Solitary and Shock Structures Induced by Poloidal Flow in Tokamaks
- Dynamics of Two-Dimensional Solitary Vortices in a Low-β Plasma with Convective Motion
- Two-Dimensional Stationary Soliton in a Steady Hydromagnetic Flow
- Dynamic Control of a Cusped Plasma near the Ion Cyclotron Frequency
- Plasma Waves Excited by Modulated Line Sources below the Electron Cyclotron Frequency
- Eigenmode Analysis of the Electromagnetic Wave in the Nonuniform Vlasov Plasma. II. : Quantization Condition
- Eigenmode Analysis of the Electromagnetic Wave in the Nonuniform Vlasov Plasma. I. : Integral Equation in the Wavenumber Space
- New Treatment of Eigenmode Analysis for an Inhomogeneous Vlasov Plasma
- Property of Electrostatic Ion-Cyclotron Waves and Ion Acoustic Waves in a Magnetic Field
- Numerical Method for Two-Dimensional Vlasov Equilibrium as a Nonlinear Boundary Value Problen
- Numerical System for Electromagnetic Dispersion Relation in Anisotropic Plasmas
- Electromagnetic Cyclotron Harmonic Waves
- New Numerical Method for Solving Eigenvalue Problems Described by Coupled Second-Order Differential Equations
- Numerical Analysis of Current-Driven Drift-Wave Instability in a Finite-β Plasma
- The Effect of Ambipolar Field for the Electrostatic Ion Cyclotron Waves in Sheet Plasmas
- Characteristic Oscillations in Sheet Plasmas
- Effects of an Ambipolar Field on Stability of Electrostatic Drift Waves in Sheet Plasmas
- Numerical Method for Nonlinear Wave Propagation and Application to Laser-Plasma Interaction
- Numerical Study of RF-Plugging of Plasma Particles in a Line-Cusp Magnetic Field
- Numerical Analysis on Linear Resonant Absorption in Plasmas
- Nonlinear Responses of Dispersive Media.II.A Stability of Stationary Solutions to the KdV Equation with a Sinusoidal Force
- Electron Waves below the Electron Plasma Frequency without Boundary Effects
- New Type of Ray Trajectory of Thermal Mode in an Inhomogeneous Magnetoplasma
- Characteristic Oscillations in a Cylindrical Plasma with the Ion Larmor Radius
- Experimental and Theoretical Trapped Resonance Cone Fields with a Field-Leakage in an Inhomogeneous Magnetoplasma
- Hole Equilibria in a Quasi-Cold Plasma
- Instability of a Plasma drifting across a Magnetic Field
- Numerical Study of Drift Wave Instability due to Non-Uniform Density Gradient in a Sheared Magnetic Field
- Nonlinear Behaviors of Waves in a Plasma in the Vicinity of Marginally Stable State
- A Nonlinear Theory of Two-Stream Instability
- Nonlinear Effects in Collective Absorption
- Nonlinear Behaviors of Ion-Wave
- A Numerical Method for Eigenvalue Problems of Integral Equations
- Ion Cyclotron Instability Driven by a Cross-Field Current
- Possibility of Potential Generation by Lower Hybrid Wave
- Propagation Characteristics in a Magnetized Plasma-Waveguide near the Ion Cyclotron Frequency
- Drift Waves in Sheet Plasmas
- Weak Thermonuclear Reaction Wave in High-Density Plasma
- Deflagration Waves in Laser Compression. I
- Higher Order Approximation in the Reductive Perturbation Method. III. : The Weakly Dissipative System
- Plasma Flow and a Soliton in a Theta Pinch
- Solitons in a Convective Motion of a Low-β Plasma. II
- Solitons in a Convective Motion of a Low-β Plasma
- Nonlinear Wave Modulation in a Magnetized Collisionless Plasma
- Nonlinear Wave Modulation in Cold Magnetized Plasmas
- Higher Order Approximation in the Reductive Perturbation Method.I.The Weakly Dispersive System
- Nonlinear Surface Alfven Wave with Magnetic Island
- A Gaussian Solution for Drift Wave Turbulence and for Rossby Wave Turbulence
- Stationary Spectrum of Pseudo-Three-Dimensional Electrostatic Turbulence in Magnetized Plasmas
- Nonlinear Hydromagnetic Solitary Waves in a Collision-Free Plasma with Isothermal Electron Pressure
- Envelope Shock Waves in Interactions of Plasma Waves of Random Phase
- Criterion for Absolute Instability of a Wave in a Nonuniform Medium
- A Model of the Dispersive Non-Linear Equation. II
- Flute Mode Instability Driven by an E×B Drift Shear of a Nonuniform Radial Electric Field
- A Resonant Far Fields and Amplitude Oscillations (Part IV. Applications to the Vlasov Plasma)
- Propagation of Drift Waves of Small but Finite Amplitude
- An Asymptotic Method for the Vlasov Equation
- Propagation of Solitary Pulses in Interactions of Plasma Waves
- A Note on the Reductive Perturbation Method
- Modulation Instability of Electron Plasma Wave
- Nonlinear Wave Modulation with Account of the Nonlinear Landau Damping
- D Nonlinear Wave Modulation in Magnetized Collisionless Plasmas (Part IV. Applications to the Vlasov Plasma)
- Envelope Shock Waves in Interactions of Longitudinal Plasma Waves of Random Phase
- Nonlinear Responses of Dispersive Media
- Reductive Perturbation Method for Nonlinear Wave Propagation in Inhomogeneous Media. II
- Reductive Perturbation Method for Nonlinea Wave Propagatio in Inhomogeneous Media. I
- Reductive Perturbation Method in Nonlinear Wave Propagation : II. Application to Hydromagnetic Waves in Cold Plasma
- B Ion-Acoustic Solitary Waves with Effects of Resonant Particles (Part IV. Applications to the Vlasov Plasma)
- Reductive Perturbation Method in Nonlinear Wave Propagation. I
- Nolilinear Collisional Drift-Waves near the Neutral Stable Point
- Hydromagnetic Plane Steady Flow in Compressible Ionized Gases
- On the Wave Propagation in the Non-Linear Fields
- On the Theories of Higher Derivative and Non-Local Couplings, II
- On the Heisenberg's Non-linear Meson Equation
- Nonlinear Collisional Drift Waves and Ion-Acoustic Waves Propagating in a Magnetic Field with Shear
- Reductive Perturbation Method and Far Fields of Wave Equations (Part I. General Theory)
- An Example of Isentropic Steady Flow in the Magnetohydrodynamics
- Electron-Acoustic Mode in a Plasma of Two-Temperature Electrons
- Reductive Perturbation Method for Wave-Modulation in Multi-Dimensional Space
- An Asymptotic Method for the Vlasov Equation. II
- A Model Equation for a Nonlinear Collisional Drift Wave in a Magnetic Field with Shear
- Nonlinear Ion Acoustic Waves with Landau Damping
- An Example of the Non-Adiabatic Motion of a Charged Particle in an External Magnetic Field
- On Wave Propagation in Non-Linear Fields
- A Note on the Modified Zero-Fourth-Order Cumulant Approximation
- On the Propagation of the Hydromagnetic Waves in Compressible Ionized Fluid
- On the Theories of Higher Derivative and Non-Local Couplings, I
- Nonlinear Ion-Acoustic Waves with Ion Landau Damping