activity
20132022
most citedA new ignition scheme using hybrid indirect-direct drive for inertial confinement fusion

3 citations · 5 across the 5 of their papers we have counts for

collaborators

7 papers

physics.plasm-ph2021

Intermittent excitation of parametric instabilities enhanced by synergistic effect in broadband laser plasma interaction

Qingkang Liu, Enhao Zhang, Wenshuai Zhang +3

A new evolution pattern for parametric instabilities in the non-linear stage driven by a broadband laser is studied with kinetic particle-in-cell simulations. It is found that an i…

physics.plasm-ph20202 cited

Hybrid-drive pressure suppressing implosion instabilities and offering nonstagnation hotspot ignition with low convergence ratio for high-gain inertial fusion

Jiwei Li, XianTu He, Lifeng Wang +15

In laser-drive ICF, hybrid drive (HD) combined direct drive (DD) and indirect drive (ID) offers a smoothed HD pressure , far higher than the ablation pressure in ID and DD,…

physics.plasm-ph2020

Anomalous stopping of laser-accelerated intense proton beam in dense ionized matter

Jieru Ren, Zhigang Deng, Wei Qi +26

Ultrahigh-intensity lasers (10-10W/cm) have opened up new perspectives in many fields of research and application [1-5]. By irradiating a thin foil, an ultrahig…

physics.plasm-ph2018

Transport of relativistic jet in the magnetized intergalactic medium

W. P. Yao, B. Qiao, Z. Xu +6

The kinetic effects of magnetic fields on the transport of relativistic jet in the intergalactic medium remain uncertain, especially for their perpendicular component. By particle-…

physics.plasm-ph2018

Scaling Laws of Ion Acceleration in Ultrathin Foils Driven by Laser Radiation Pressure

X. F. Shen, B. Qiao, H. He +5

Scaling laws of ion acceleration in ultrathin foils driven by radiation pressure of intense laser pulses are investigated by theoretical analysis and two-dimensional particle-in-ce…

physics.plasm-ph2017

Improving hot-spot pressure for ignition in high-adiabat Inertial Confinement Fusion implosion

Dongguo Kang, Shaoping Zhu, Wenbing Pei +4

A novel capsule target design to improve the hot-spot pressure in the high-adiabat implosion for inertial confinement fusion is proposed, where a layer of comparatively high-densit…