textPlasma-based accelerators aim to efficiently generate relativistic electrons by exciting plasma waves using a laser or particle beam driver, and "surfing" electrons on the resulting wakefields. In the blowout regime of such wakefield acceleration techniques, the intense laser radiation pressure or beam fields expel all of the plasma electrons transversely, forming a region completely devoid of electrons ("bubble") that co-propagates behind the driver. Injection, where initially quiescent background plasma electrons become trapped inside of the plasma bubble, can be caused by a variety of mechanisms such as bubble expansion, field ionization or collision between pump and injector pulses. This work will present a study of the injection ph...
We describe an interplay between two injection mechanism of background electrons into an evolving pl...
Self-injection in a laser-plasma wakefield accelerator (LWFA) is usually achieved by increasing the ...
In this chapter we describe and discuss a special technique in laser wakefield acceleration (LWFA): ...
textPlasma-based accelerators aim to efficiently generate relativistic electrons by exciting plasma ...
Self-injection of background electrons in plasma wakefield accelerators in the highly nonlinear bubb...
Plasma-based wakefield accelerator is attractive for generating quasi-monoenergetic electron beams u...
Laser-driven plasma wakefield accelerators provide accelerating electric fields orders of magnitude ...
195 pagesPlasma-based accelerators represent one of the most exciting concepts in high-gradient part...
A laser-plasma-based source of relativistic electrons is described in detail, and analyzed in two di...
The dynamics of laser ionization-based electron injection in the recently introduced plasma photocat...
An electron density bubble driven in a rarefied uniform plasma by a slowly evolving laser pulse goes...
An optimizing and alternative scheme for electron injection and acceleration in the wake bubble driv...
In this dissertation, a fully object-oriented, fully relativistic, multidimensional Particle-In-Cell...
All-optical controlled injection and acceleration of electrons in a laser wakefield has recently bee...
Laser wakefield acceleration (LWFA) and direct laser acceleration (DLA) are two different kinds of l...
We describe an interplay between two injection mechanism of background electrons into an evolving pl...
Self-injection in a laser-plasma wakefield accelerator (LWFA) is usually achieved by increasing the ...
In this chapter we describe and discuss a special technique in laser wakefield acceleration (LWFA): ...
textPlasma-based accelerators aim to efficiently generate relativistic electrons by exciting plasma ...
Self-injection of background electrons in plasma wakefield accelerators in the highly nonlinear bubb...
Plasma-based wakefield accelerator is attractive for generating quasi-monoenergetic electron beams u...
Laser-driven plasma wakefield accelerators provide accelerating electric fields orders of magnitude ...
195 pagesPlasma-based accelerators represent one of the most exciting concepts in high-gradient part...
A laser-plasma-based source of relativistic electrons is described in detail, and analyzed in two di...
The dynamics of laser ionization-based electron injection in the recently introduced plasma photocat...
An electron density bubble driven in a rarefied uniform plasma by a slowly evolving laser pulse goes...
An optimizing and alternative scheme for electron injection and acceleration in the wake bubble driv...
In this dissertation, a fully object-oriented, fully relativistic, multidimensional Particle-In-Cell...
All-optical controlled injection and acceleration of electrons in a laser wakefield has recently bee...
Laser wakefield acceleration (LWFA) and direct laser acceleration (DLA) are two different kinds of l...
We describe an interplay between two injection mechanism of background electrons into an evolving pl...
Self-injection in a laser-plasma wakefield accelerator (LWFA) is usually achieved by increasing the ...
In this chapter we describe and discuss a special technique in laser wakefield acceleration (LWFA): ...