A foil-ramparts target interaction with an ultra-short, ultra-intense laser pulse (pulse duration between 10(-12) and 10(-15) s, intensity above 10(18) W cm(-2)) to produce proton beams with controlled divergence and concentrated energy density in target normal sheath acceleration regime is studied. Two-dimension-in-space and three-dimension-in-velocity particle-in-cell simulations show that the foil-ramparts target helps to reshape the sheath electric field and generate a transverse quasi-static electric field of similar to 6.7 TV m(-1) along the inner wall of the ramparts. The transverse electric field suppresses the transverse expansion of the proton beam effectively, as it tends to force the produced protons to focus inwards to the cent...
The spatial energy distributions of beams of protons accelerated by ultrahigh intensity (>10^19 W/cm...
We report on the transverse refluxing of energetic electrons in mass-limited foil targets irradiated...
We report on the transverse refluxing of energetic electrons in mass-limited foil targets irradiated...
It is proposed that guided and collimated proton acceleration by intense lasers can be achieved usin...
We report on a study of the spatial profile of proton beams produced through target normal sheath ac...
We report on a study of the spatial profile of proton beams produced through target normal sheath ac...
973 Program [2011CB808104]; National Natural Science Foundation of China [11335013, 11125526, 113052...
The collimation of proton beams accelerated during ultra-intense laser irradiation of thin aluminum ...
The collimation of proton beams accelerated during ultra-intense laser irradiation of thin aluminum ...
We report on a study of the spatial profile of proton beams produced through target normal sheath ac...
The characteristics of proton beam generated in the interaction of an ultrashort laser pulse with a ...
We report on a study of the spatial profile of proton beams produced through target normal sheath ac...
High intensity laser-driven proton acceleration from micromachined targets is studied experimentally...
A scheme for producing collimated protons from laser interactions with a diamond-like-carbon + pinho...
We report on the transverse refluxing of energetic electrons in mass-limited foil targets irradiated...
The spatial energy distributions of beams of protons accelerated by ultrahigh intensity (>10^19 W/cm...
We report on the transverse refluxing of energetic electrons in mass-limited foil targets irradiated...
We report on the transverse refluxing of energetic electrons in mass-limited foil targets irradiated...
It is proposed that guided and collimated proton acceleration by intense lasers can be achieved usin...
We report on a study of the spatial profile of proton beams produced through target normal sheath ac...
We report on a study of the spatial profile of proton beams produced through target normal sheath ac...
973 Program [2011CB808104]; National Natural Science Foundation of China [11335013, 11125526, 113052...
The collimation of proton beams accelerated during ultra-intense laser irradiation of thin aluminum ...
The collimation of proton beams accelerated during ultra-intense laser irradiation of thin aluminum ...
We report on a study of the spatial profile of proton beams produced through target normal sheath ac...
The characteristics of proton beam generated in the interaction of an ultrashort laser pulse with a ...
We report on a study of the spatial profile of proton beams produced through target normal sheath ac...
High intensity laser-driven proton acceleration from micromachined targets is studied experimentally...
A scheme for producing collimated protons from laser interactions with a diamond-like-carbon + pinho...
We report on the transverse refluxing of energetic electrons in mass-limited foil targets irradiated...
The spatial energy distributions of beams of protons accelerated by ultrahigh intensity (>10^19 W/cm...
We report on the transverse refluxing of energetic electrons in mass-limited foil targets irradiated...
We report on the transverse refluxing of energetic electrons in mass-limited foil targets irradiated...