activity
20182026
most citedTarget density effects on charge tansfer of laser-accelerated carbon ions in dense plasma

11 citations · 15 across the 8 of their papers we have counts for

collaborators

15 papers

physics.plasm-ph2026

Tunable high-charge relativistic electron beams via direct laser acceleration in hohlraum-preheated foam targets

Ziyao Wang, Jieru Ren, Zhigang Deng +28

Direct laser acceleration (DLA) in near-critical-density (NCD) plasmas can efficiently generate high-charge relativistic electron beams, yet beam parameters depend critically on pr…

physics.plasm-ph2026

Observation of stopping power reduction at strong ion-plasma coupling

Yun Liu, Jieru Ren, Zhigang Deng +30

Ion stopping in dense plasma is crucial for stellar evolution and fusion ignition. However, its behavior in the strong ion-plasma coupling regime beyond the linear limit has long r…

astro-ph.HE2024

Laboratorial radiative shocks with multiple parameters and first quantifying verifications to core-collapse supernovae

Lu Zhang, Jianhua Zheng, Zhenghua Yang +20

We present experiments to reproduce the characteristics of core-collapse supernovae with different stellar masses and initial explosion energies in the laboratory. In the experimen…

physics.atom-ph2023

Charge equilibration of Laser-accelerated Carbon Ions in Foam Target

Bubo Ma, Jieru Ren, Lirong Liu +39

The charge equilibration of laser-accelerated carbon ion beams in 2 mg/cm3 foam target was investigated experimentally. The ions were generated through target normal sheath acceler…

physics.plasm-ph2023★ 4 cited

Proton-Boron Fusion Yield Increased by Orders of Magnitude with Foam Targets

Wen-Qing Wei, Shi-Zheng Zhang, Zhi-Gang Deng +35

A novel intense beam-driven scheme for high yield of the tri-alpha reaction 11B(p,α)2α was investigated. We used a foam target made of cellulose triacetate (TAC, C_9H_{16}O_8) dope…

physics.plasm-ph2023

Energy loss enhancement of very intense proton beams in dense matter due to the beam-density effect

Benzheng Chen, Jieru Ren, Zhigang Deng +27

Thoroughly understanding the transport and energy loss of intense ion beams in dense matter is essential for high-energy-density physics and inertial confinement fusion. Here, we r…