A scheme for producing collimated protons from laser interactions with a diamond-like-carbon + pinhole target is proposed. The process is based on radiation pressure acceleration in the multi-species light-sail regime [B. Qiao et al., Phys. Rev. Lett. 105, 155002 (2010); T. P. Yu et al., Phys. Rev. Lett. 105, 065002 (2010)]. Particle-in-cell simulations demonstrate that transverse quasistatic electric field at TV/m level can be generated in the pinhole. The transverse electric field suppresses the transverse expansion of protons effectively, resulting in a higher density and more collimated proton beam compared with a single foil target. The dependence of the proton beam divergence on the parameters of the pinhole is also investigated. (C) ...
We present a theoretical and numerical study of the novel acceleration scheme by applying a combinat...
Quality of an ion beam is one of the critical factors in intense-laser ion beam generation. A purpos...
We report an autofocused, enhanced proton acceleration by the interaction of an intense laser pulse ...
Proton acceleration by ultra-intense laser pulse irradiating a target with cross-section smaller tha...
It is proposed that guided and collimated proton acceleration by intense lasers can be achieved usin...
A foil-ramparts target interaction with an ultra-short, ultra-intense laser pulse (pulse duration be...
In laser-driven proton acceleration, generation of quasi-monoenergetic proton beams has been conside...
We present an acceleration scheme by applying a combination of laser radiation pressure and shielded...
Two-dimensional particle-in cell simulation shows that protons in a small target located in an under...
This thesis presents experimental measurements, supported by particle-in-cell simulations, of ion be...
Usage of double-layer targets consisting of heavy and light material with modulated interface betwee...
We study theoretically and numerically the acceleration of protons by a combination of laser radiati...
The propagation of ultraintense laser pulses through matter is connected with the generation of stro...
Laser driven proton acceleration is proposed to be greatly enhanced by using a cone-tube target, whi...
In order to generate high quality ion beams through a relatively uniform radiation pressure accelera...
We present a theoretical and numerical study of the novel acceleration scheme by applying a combinat...
Quality of an ion beam is one of the critical factors in intense-laser ion beam generation. A purpos...
We report an autofocused, enhanced proton acceleration by the interaction of an intense laser pulse ...
Proton acceleration by ultra-intense laser pulse irradiating a target with cross-section smaller tha...
It is proposed that guided and collimated proton acceleration by intense lasers can be achieved usin...
A foil-ramparts target interaction with an ultra-short, ultra-intense laser pulse (pulse duration be...
In laser-driven proton acceleration, generation of quasi-monoenergetic proton beams has been conside...
We present an acceleration scheme by applying a combination of laser radiation pressure and shielded...
Two-dimensional particle-in cell simulation shows that protons in a small target located in an under...
This thesis presents experimental measurements, supported by particle-in-cell simulations, of ion be...
Usage of double-layer targets consisting of heavy and light material with modulated interface betwee...
We study theoretically and numerically the acceleration of protons by a combination of laser radiati...
The propagation of ultraintense laser pulses through matter is connected with the generation of stro...
Laser driven proton acceleration is proposed to be greatly enhanced by using a cone-tube target, whi...
In order to generate high quality ion beams through a relatively uniform radiation pressure accelera...
We present a theoretical and numerical study of the novel acceleration scheme by applying a combinat...
Quality of an ion beam is one of the critical factors in intense-laser ion beam generation. A purpos...
We report an autofocused, enhanced proton acceleration by the interaction of an intense laser pulse ...