Theory of Plasma Oscillations. A. Origin of Medium-Like Behavior

From MaRDI portal
Publication:5789469

DOI10.1103/PhysRev.75.1851zbMath0033.23803OpenAlexW1987347126MaRDI QIDQ5789469

David Bohm, Eugene P. Gross

Publication date: 1949

Published in: Physical Review (Search for Journal in Brave)

Full work available at URL: https://doi.org/10.1103/physrev.75.1851




Related Items (52)

Spectral representation of plasma oscillationsTheoretical Practice: the Bohm-Pines QuartetQuantum theory of electron gas plasma oscillations in a magnetic fieldLinearized Wave-Damping Structure of Vlasov--Poisson in $\mathbb{R}^3$Nonlinear interaction of a beam of finite density with a longitudinal waveGravitational wave modes in matterPlasma Oscillations in MetalsElectromagnetic Propagation in a Relativistic Electron Gas at Finite TemperaturesGrowing Electric Space-Charge Waves and Haeff's Electron-Wave TubeUse of the Boltzmann Equation for the Study of Ionized Gases of Low Density. IIA Numerical study of Landau damping with PETSc-PICTrapped particle effect on the velocity of circularly polarized electromagnetic waves in an isotropic plasmaExact Nonlinear Plasma OscillationsBasic Microwave Properties of Hot MagnetoplasmasKinematics of Growing WavesSmall BGK waves and nonlinear Landau dampingDissipation of Currents in Ionized MediaCharacteristic Energy Loss of Electrons Passing through Metal Foils. II. Dispersion Relation and Short Wavelength Cutoff for Plasma OscillationsTransverse Plasma Waves and Plasma VorticesNonlinear Electron Oscillations in a Cold PlasmaRecent developments in some non-self-adjoint problems of mathematical physicsGrowth of electron space-charge and radio waves in moving ion streamsFast growing instabilities for non-parallel flowsApproach to Equilibrium of Electrons, Plasmons, and Phonons in Quantum and Classical PlasmasA Fast Solver for Implicit Integration of the Vlasov--Poisson System in the Eulerian FrameworkSemi‐Lagrangian Vlasov‐Maxwell Simulations of Self‐Sustained Kinetic Electron Nonlinear Waves in the Relativistic Laser‐Plasma InteractionOn plasma oscillations with special emphasis on the landau damping and the gross gaps in the frequency spectrumPlasma Oscillations of a Large Number of Electron BeamsLandau Damping and Resonant Energy AbsorptionA Particular Solution of the Linearized Boltzmann EquationLandau damping, Stokes phenomenon and the weakly magnetized Maxwellian plasmaPropagation of Electromagnetic Waves in PlasmasNonlinear stationary states of the Vlasov equation in the Fourier-transformed velocity-spaceENERGY GAP, MASS GAP, AND SPONTANEOUS SYMMETRY BREAKINGFrom dressed electrons to quasiparticles: the emergence of emergent entities in quantum field theoryEffects of Plasma Boundaries in Plasma OscillationsRadio Wave Generation by Multistream Charge InteractionA Collective Description of Electron Interactions. I. Magnetic InteractionsA Collective Description of Electron Interactions: II. Collective<mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"><mml:mi>vs</mml:mi></mml:math>Individual Particle Aspects of the InteractionsTheory of the Production of Secondary Electrons in SolidsPropagation in Electron-Ion StreamsA Modified Theory of Production of Secondary Electrons in SolidsTheory of Plasma Waves in MetalsPlasma Oscillations in a Static Magnetic FieldThe Dispersion Formula for Plasma WavesA Model for Collision Processes in Gases. I. Small Amplitude Processes in Charged and Neutral One-Component SystemsCollective excitations of nuclear matterThe Collective Description of Many-Particle Systems (A Generalized Theory of Hartree Fields)Nonlinear oscillations and nonstationary flow in a zero temperature plasma. I: Initial and boundary value problems. II: General characteristics of the motionTurnover of activationless escape rate for collisional dynamicsPassage of Charged Particles through PlasmaBalance equations in semi-relativistic quantum hydrodynamics



Cites Work


This page was built for publication: Theory of Plasma Oscillations. A. Origin of Medium-Like Behavior