Ultrafast betatron x-ray emission from electron oscillations in laser wakefield acceleration (LWFA) has been widely investigated as a promising source. Betatron x-rays are usually produced via self-injected electron beams, which are not controllable and are not optimized for x-ray yields. Here, we present anew method for bright hard x-ray emission via ionization injection from the K-shell electrons of nitrogen into the accelerating bucket. A total photon yield of 8 × 108/shot and 108 photons with energy greater than 110 keV is obtained. The yield is 10 times higher than that achieved with self-injection mode in helium under similar laser parameters. The simulation suggests that ionization- injected electrons are quickly accelerated to the d...
Betatron radiation from laser wakefield accelerated electrons and X-rays scattered off a counter-pro...
The temporal profile of X-ray betatron radiation was theoretically studied for the parameters availa...
Recent progress in laser-driven plasma acceleration now enables the acceleration of electrons to sev...
Ultrafast betatron x-ray emission from electron oscillations in laser wakefield acceleration (LWFA) ...
We present investigations on betatron x-ray source and electron beams from ionization injection in t...
Hard X-ray sources from femtosecond (fs) laser-produced plasmas, including the betatron X-rays from ...
This thesis will detail experimental research in to laser wakefield acceleration (LWFA), with a part...
International audienceHigh intensity femtosecond laser pulses can be used to generate X-ray radiatio...
We propose a new idea to enhance and control the betatron radiation by using a modulating laser puls...
The features of Betatron x-ray emission produced in a laser-plasma accelerator are closely linked to...
We investigate a new regime for betatron x-ray emission that utilizes kilojoule-class picosecond las...
International audienceRecent progress in laser-driven plasma acceleration now enables the accelerati...
The laser-plasma wakefield accelerator is a novel ultra-compact particle accelerator. A very intense...
The laser-plasma wakefield accelerator is a novel ultra-compact particle accelerator. A very intense...
We present an analysis of the performance of a broadband secondary radiation source based on a high-...
Betatron radiation from laser wakefield accelerated electrons and X-rays scattered off a counter-pro...
The temporal profile of X-ray betatron radiation was theoretically studied for the parameters availa...
Recent progress in laser-driven plasma acceleration now enables the acceleration of electrons to sev...
Ultrafast betatron x-ray emission from electron oscillations in laser wakefield acceleration (LWFA) ...
We present investigations on betatron x-ray source and electron beams from ionization injection in t...
Hard X-ray sources from femtosecond (fs) laser-produced plasmas, including the betatron X-rays from ...
This thesis will detail experimental research in to laser wakefield acceleration (LWFA), with a part...
International audienceHigh intensity femtosecond laser pulses can be used to generate X-ray radiatio...
We propose a new idea to enhance and control the betatron radiation by using a modulating laser puls...
The features of Betatron x-ray emission produced in a laser-plasma accelerator are closely linked to...
We investigate a new regime for betatron x-ray emission that utilizes kilojoule-class picosecond las...
International audienceRecent progress in laser-driven plasma acceleration now enables the accelerati...
The laser-plasma wakefield accelerator is a novel ultra-compact particle accelerator. A very intense...
The laser-plasma wakefield accelerator is a novel ultra-compact particle accelerator. A very intense...
We present an analysis of the performance of a broadband secondary radiation source based on a high-...
Betatron radiation from laser wakefield accelerated electrons and X-rays scattered off a counter-pro...
The temporal profile of X-ray betatron radiation was theoretically studied for the parameters availa...
Recent progress in laser-driven plasma acceleration now enables the acceleration of electrons to sev...