It is shown that ions can be accelerated by the space charge electric force arising from the separation of electrons and positrons due to the ponderomotive force of the magnetic field-aligned circularly polarized electromagnetic (CPEM) wave in a magnetized electron-positron-ion plasma. The ion acceleration critically depends on the external magnetic field strength. The result is useful in understanding differential ion acceleration in magnetized electron-positron-ion plasmas, such as those in magnetars and in some laboratory experiments that aim to mimic astrophysical environments
International audienceWe discuss a new acceleration or energization mechanism of charged particles i...
Auroral particle acceleration is the result of the appearance of effective resistance in field-paral...
International audienceShock acceleration is a ubiquitous phenomenon in astrophysical plasmas. Plasma...
It is shown that ions can be accelerated by the space charge electric force arising from the separat...
A general description of ion acceleration by the ponderomotive forces of circularly polarized electr...
Positron acceleration in a shock wave in a plasma consisting of electrons, positrons, and ions is st...
Wave propagation and particle acceleration in a plasma consisting of electrons, positrons, and ions ...
The generation of electrostatic wakefields by an ordinary mode radiation and a magnetic field-aligne...
Both in magnetohydrodynamic shocks and in accelerated partially ionized gas flow across a magnetic f...
An intense pulsed electron beam traversing a thin metal plate creates a volume of dense plasma. Curr...
In this paper, the acceleration of an electron in the interaction with a plasma wave and a magnetize...
It is shown that the relativistic ponderomotive force of intense circularly polarized Laguerre–Gauss...
A theory for large amplitude compressional electromagnetic solitary pulses in a magnetized electron-...
We propose a mechanism for electron acceleration in which circularly polarized electromagnetic waves...
A leading method of propelling plasma is through the electrical acceleration of ions through a cloud...
International audienceWe discuss a new acceleration or energization mechanism of charged particles i...
Auroral particle acceleration is the result of the appearance of effective resistance in field-paral...
International audienceShock acceleration is a ubiquitous phenomenon in astrophysical plasmas. Plasma...
It is shown that ions can be accelerated by the space charge electric force arising from the separat...
A general description of ion acceleration by the ponderomotive forces of circularly polarized electr...
Positron acceleration in a shock wave in a plasma consisting of electrons, positrons, and ions is st...
Wave propagation and particle acceleration in a plasma consisting of electrons, positrons, and ions ...
The generation of electrostatic wakefields by an ordinary mode radiation and a magnetic field-aligne...
Both in magnetohydrodynamic shocks and in accelerated partially ionized gas flow across a magnetic f...
An intense pulsed electron beam traversing a thin metal plate creates a volume of dense plasma. Curr...
In this paper, the acceleration of an electron in the interaction with a plasma wave and a magnetize...
It is shown that the relativistic ponderomotive force of intense circularly polarized Laguerre–Gauss...
A theory for large amplitude compressional electromagnetic solitary pulses in a magnetized electron-...
We propose a mechanism for electron acceleration in which circularly polarized electromagnetic waves...
A leading method of propelling plasma is through the electrical acceleration of ions through a cloud...
International audienceWe discuss a new acceleration or energization mechanism of charged particles i...
Auroral particle acceleration is the result of the appearance of effective resistance in field-paral...
International audienceShock acceleration is a ubiquitous phenomenon in astrophysical plasmas. Plasma...