arXiv · 1812.01294
The high density $γ$-ray emission and dense positron production via multi-lasers driven circular target
Abstract
A diamond-like carbon circular target is proposed to improve the $γ$-ray emission and pair production with lasers intensity of $8\times 10^{22} ~\mathrm{W/cm^2}$ by using two-dimensional particle-in-cell simulations with quantum electrodynamics. It is found that the circular target can significantly enhance the density of $γ$-photons than plane target when two colliding circularly polarized lasers irradiate the target. By multi-lasers irradiate the circular target, the optical trap of lasers can prevent the high energy electrons accelerated by laser radiation pressure from escaping. Hence, high density as $5164 n_c$ $γ$-photons is obtained through nonlinear Compton back-scattering. Meanwhile, $2.7 \times 10^{11}$ positrons with average energy of $230 ~\mathrm{MeV}$ is achieved via multi-photon Breit-Wheeler process. Such ultrabright $γ$-ray source and dense positrons source can be useful to many applications. The optimal target radius and laser mismatching deviation parameters are also discussed in detail.
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Ya-Juan Hou, Bai-Song Xie, Chong Lv, Feng Wan, Li Wang, Nureli Yasen, Hai-Bo Sang, Guo-Xing Xia. 2018-12-04. The high density $γ$-ray emission and dense positron production via multi-lasers driven circular target. https://doi.org/10.1088/2058-6272%2Fab1602
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