collaborators

5 papers

physics.plasm-ph2026

FDTD Simulation of O-X Mode Conversion Process in Non-uniform Magnetized Plasma

Chenxu Wang, Ryota Usui, Hiroaki Nakamura +2

Electron Bernstein Waves (EBWs) are electrostatic waves than can propagate in overdense plasmas without density cutoff, making them suitable for high density plasma heating. Since…

physics.plasm-ph2026

Effects of realistic laser intensity and phase distribution on high-charge laser wakefield acceleration

Yuhui Xia, Zhenan Wang, Ziyao Tang +14

Laser wakefield acceleration (LWFA) can produce relativistic electron beams and various secondary particles in centimeter-long plasmas, making it a valuable particle source with im…

physics.acc-ph2026

Nanometer-scale pre-bunched electron beams generated from all-optical plasma-based acceleration

Zhenan Wang, Zewei Xu, Qianyi Ma +7

High-quality and prebunched electron beams can produce coherent x-rays with high intensity and narrow bandwidth, which is essential for modern light sources. An all-optical scheme…

cond-mat.mtrl-sci2026

Scattering analysis of nano-scale chiral structures in optical vortex using Method of Moments

Chenxu Wang, Hideki Kawaguchi, Hiroaki Nakamura +2

This paper presents a full 3D Method of Moments (MoM) simulation for analysis of scattering from nano-scale chiral ribbon structures under optical vortex illumination to aim to inv…

physics.plasm-ph2025

Consideration on relation between penetrated power and topological charge of millimeter-wave vortex in magnetized plasma

Chenxu Wang, Hideki Kawaguchi, Hiroaki Nakamura +1

It was demonstrated that the vortex field of a hybrid mode can propagate in the mag-netized plasma region where plane waves are unable to propagate due to the cut-off condition. In…