A nonlinear beatwave regime of plasma wave excitation is considered. Two beatwave drivers are considered: intensity-modulated laser pulse and density-modulated (microbunched) electron beam. It is shown that a long beatwave pulse can excite strong plasma waves in its wake even when the beatwave frequency is detuned from the electron plasma frequency. The wake is caused by the dynamic bi-stability of the nonlinear plasma wave if the beatwave amplitude exceeds the analytically calculated threshold. In the context of a microbunched beam driven plasma wakefield accelerator, this excitation regime can be applied to developing a femtosecond electron injector
A modified version of the Plasma Beat-Wave Accelerator scheme is introduced and analyzed, which is b...
In this paper we describe the recent work at UCLA on the acceleration of externally injected electro...
The conventional approach to exciting high phase velocity waves in plasmas is to employ a laser puls...
Beatwave excitation of plasma waves is analyzed in the regime where relativistic corrections to the ...
The excitation of travelling nonlinear Langmuir waves in a plasma by a relativistic electron bunch i...
Analytical and numerical studies of plasma physics in ultra-intense plasma wave generation, electron...
The excitation of travelling nonlinear Langmuir waves in a plasma by a relativistic electron bunch i...
A method for generating large-amplitude nonlinear plasma waves, which uti-lizes an optimized train o...
Generation of large amplitude plasma waves using high-power lasers in either the wakefield or beat-w...
A method for generating large-amplitude nonlinear plasma waves, which utilizes an optimized train of...
An experiment has been carried out to investigate one-dimensional nonlinear evolution and formation ...
720-726The stability of a long wavelength large amplitude plasma wave, generated in a laser wakefiel...
Generation of accelerating plasma waves using two counter-propagating laser beams is considered. Col...
A method for generating large-amplitude plasma waves, which utilizes an optimized train of independe...
The physics of plasma-based accelerators driven by short-pulse lasers is reviewed. This includes the...
A modified version of the Plasma Beat-Wave Accelerator scheme is introduced and analyzed, which is b...
In this paper we describe the recent work at UCLA on the acceleration of externally injected electro...
The conventional approach to exciting high phase velocity waves in plasmas is to employ a laser puls...
Beatwave excitation of plasma waves is analyzed in the regime where relativistic corrections to the ...
The excitation of travelling nonlinear Langmuir waves in a plasma by a relativistic electron bunch i...
Analytical and numerical studies of plasma physics in ultra-intense plasma wave generation, electron...
The excitation of travelling nonlinear Langmuir waves in a plasma by a relativistic electron bunch i...
A method for generating large-amplitude nonlinear plasma waves, which uti-lizes an optimized train o...
Generation of large amplitude plasma waves using high-power lasers in either the wakefield or beat-w...
A method for generating large-amplitude nonlinear plasma waves, which utilizes an optimized train of...
An experiment has been carried out to investigate one-dimensional nonlinear evolution and formation ...
720-726The stability of a long wavelength large amplitude plasma wave, generated in a laser wakefiel...
Generation of accelerating plasma waves using two counter-propagating laser beams is considered. Col...
A method for generating large-amplitude plasma waves, which utilizes an optimized train of independe...
The physics of plasma-based accelerators driven by short-pulse lasers is reviewed. This includes the...
A modified version of the Plasma Beat-Wave Accelerator scheme is introduced and analyzed, which is b...
In this paper we describe the recent work at UCLA on the acceleration of externally injected electro...
The conventional approach to exciting high phase velocity waves in plasmas is to employ a laser puls...