Matter and Radiation at Extremes, Volume. 4, Issue 1, 014401(2019)
Collimated GeV attosecond electron–positron bunches from a plasma channel driven by 10 PW lasers
Fig. 1. (a) Schematic of the generation of collimated GeV positron jets by the interaction of two 10 PW laser pulses with a plasma channel filled with NCD plasma. The drive pulse (laser #1) and probe pulse (laser #2) are incident from the left and right sides, respectively. Two cases are considered: (b) a plasma channel with a radially symmetric density profile and (c) a uniform plasma slab.
Fig. 2. (a) Energy spectra of electrons at
Fig. 3. (a) Energy spectra of γ rays at
Fig. 4. (a) Energy spectra of positrons from a plasma channel (red curve) and a uniform plasma slab (black curve), where the inset shows the positron angular divergence. (b) Evolution of total yield and energy of positrons with the interaction time, where the solid curves are for a plasma channel and the dashed curves are for a uniform plasma slab. (c) and (d) show the energy density distributions of positrons generated from a plasma channel and from a uniform plasma slab, respectively. The insets present the density profiles of positrons in the
Fig. 5. Yield
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Xing-Long Zhu, Min Chen, Tong-Pu Yu, Su-Ming Weng, Feng He, Zheng-Ming Sheng. Collimated GeV attosecond electron–positron bunches from a plasma channel driven by 10 PW lasers[J]. Matter and Radiation at Extremes, 2019, 4(1): 014401
Category: Fundamental Physics At Extremes
Received: Jul. 30, 2018
Accepted: Oct. 28, 2018
Published Online: Mar. 25, 2019
The Author Email: Sheng Zheng-Ming (zmsheng@sjtu.edu.cn)