activity
20242026
collaborators

5 papers

physics.plasm-ph2026

Generation of dense relativistic electron beams via vortex laser-driven self-generated magnetic pinching

Mingxuan Wei, Fengyu Sun, Zhongpeng Li +21

In multi-petawatt laser plasma accelerators, achieving high-density relativistic electron beams is typically accompanied by large transverse divergence, limiting the attainable eff…

physics.ins-det2025

Neural network-based deconvolution for GeV-Scale Gamma-Ray Spectroscopy

Zhuofan Zhang, Mingxuan Wei, Kyle Fleck +4

High-energy gamma-ray spectroscopy is crucial for studying and advancing the application of high-energy photons in areas like strong-field physics, high-energy-density science, and…

physics.plasm-ph2025

Ultrashort Time-Integrated Diagnosis of Laser-Heated Deuterium Ions in Dense Plasma via Fusion Neutron Spectra

Jie Feng, Hao Xu, Mingxuan Wei +11

The ultrashort time-integrated diagnosis of ions plays a vital role in high energy density physics research. However, it is extremely challenging to measure in experiment. Here, we…

physics.plasm-ph2025

Plasma-state metasurfaces for ultra-intensive field manipulation

Zi-Yu Chen, Hao Xu, Jiao Jia +23

High-power lasers offer ultrahigh intensities for plasma interactions, but they lack advanced techniques to control the properties of the fields, because no optical elements could…

hep-ex2024

A Platform for All-optical Thomson/ Compton Scattering with Versatile Parameters

Siyu Chen, Wenchao Yan, Mingyang Zhu +16

A dual-beam platform for all-optical electron-photon scattering, or Thomson/Compton scattering, with adjustable collision-angle and parameter tuning ability has been developed, whi…