The plasma emission is the radiation mechanism responsible for solar type II and type III radio bursts. The first theory of plasma emission was put forth in the 1950s, but the rigorous demonstration of the process based upon first principles had been lacking. The present Letter reports the first complete numerical solution of electromagnetic weak turbulence equations. It is shown that the fundamental emission is dominant and unless the beam speed is substantially higher than the electron thermal speed, the harmonic emission is not likely to be generated. The present findings may be useful for validating reduced models and for interpreting particle-in-cell simulations
International audienceThe generation of Langmuir wave turbulence by a weak electron beam in a random...
International audienceThe generation of Langmuir wave turbulence by a weak electron beam in a random...
The problem of electron-beam propagation in inhomogeneous solar wind is intimately related to the so...
The plasma emission is the radiation mechanism responsible for solar type II and type III radio burs...
The plasma emission, or electromagnetic (EM) radiation at the plasma frequency and/or its harmonic(s...
The plasma emission, or electromagnetic (EM) radiation at the plasma frequency and/or its harmonic(s...
The plasma emission process, which is the mechanism for solar type II and type III radio burst pheno...
The plasma emission process, which is the mechanism for solar type II and type III radio burst pheno...
The radiation emission mechanism responsible for both type-II and type-III solar radio bursts is com...
Known radiation emission mechanisms in plasmas include bremmstrahlung (or free-free emission), gyro-...
Known radiation emission mechanisms in plasmas include bremmstrahlung (or free-free emission), gyro-...
International audienceThe generation of Langmuir wave turbulence by a weak electron beam in a random...
International audienceThe generation of Langmuir wave turbulence by a weak electron beam in a random...
International audienceThe generation of Langmuir wave turbulence by a weak electron beam in a random...
International audienceThe generation of Langmuir wave turbulence by a weak electron beam in a random...
International audienceThe generation of Langmuir wave turbulence by a weak electron beam in a random...
International audienceThe generation of Langmuir wave turbulence by a weak electron beam in a random...
The problem of electron-beam propagation in inhomogeneous solar wind is intimately related to the so...
The plasma emission is the radiation mechanism responsible for solar type II and type III radio burs...
The plasma emission, or electromagnetic (EM) radiation at the plasma frequency and/or its harmonic(s...
The plasma emission, or electromagnetic (EM) radiation at the plasma frequency and/or its harmonic(s...
The plasma emission process, which is the mechanism for solar type II and type III radio burst pheno...
The plasma emission process, which is the mechanism for solar type II and type III radio burst pheno...
The radiation emission mechanism responsible for both type-II and type-III solar radio bursts is com...
Known radiation emission mechanisms in plasmas include bremmstrahlung (or free-free emission), gyro-...
Known radiation emission mechanisms in plasmas include bremmstrahlung (or free-free emission), gyro-...
International audienceThe generation of Langmuir wave turbulence by a weak electron beam in a random...
International audienceThe generation of Langmuir wave turbulence by a weak electron beam in a random...
International audienceThe generation of Langmuir wave turbulence by a weak electron beam in a random...
International audienceThe generation of Langmuir wave turbulence by a weak electron beam in a random...
International audienceThe generation of Langmuir wave turbulence by a weak electron beam in a random...
International audienceThe generation of Langmuir wave turbulence by a weak electron beam in a random...
The problem of electron-beam propagation in inhomogeneous solar wind is intimately related to the so...