Publications
Publications
Selected peer-reviewed journal papers and research publications
Measuring the growth of Alfvén wave parametric decay instability using counter-propagating waves: Theory and simulations
Physics Physical Review E
Citation:
Feiyu Li, Seth Dorfman, and Xiangrong Fu, Physical Review E 112, 025206 (2025)
Read Paper August 2025
Effects of wave damping and finite perpendicular scale on three-dimensional Alfvén wave parametric decay in low-beta plasmas
Research Phys. Plasmas
Hybrid simulation of Alfvén wave parametric decay instability in a laboratory relevant plasma
Research Phys. Plasmas
Citation:
Feiyu Li, Xiangrong Fu, Seth Dorfman 2022 Phys. Plasmas 29 092108
Read Paper September 2022
CoSyR: A novel beam dynamics code for the modeling of synchrotron radiation effects
Research Astrophys. J.
Citation:
C.-K. Huang, F.-Y. Li, H.N. Rakotoarivelo, et al. 2022 Nuclear Inst. and Methods in Physics Research, A
Read Paper May 2022
Parametric decay of Alfvénic wave packets in nonperiodic low-beta plasmas
Research Astrophys. J.
Vacuum laser acceleration of super-ponderomotive electrons using relativistic transparency injection
High Impact Nature Communications
Particle resonances and trapping of direct laser acceleration in a laser-plasma channel
Physics Physical Review Accelerators and Beams
Citation:
F. Li, P. K. Singh, S. Palaniyappan, and C. Huang, Physical Review Accelerators and Beams 24, 041301 (2021)
Read Paper April 2021
Radially polarized, half-cycle, attosecond pulses from laser wakefields through coherent synchrotronlike radiation
Physics Physical Review E
Coherent kilo-electron-volt backscattering from plasma-wave boosted relativistic electron mirrors
Applied Science Applied Physics Letters
Citation:
F. Li, Z. M. Sheng, et al. Applied Physics Letters 105, 161102 (2014)
Read Paper October 2014
Dense attosecond electron sheets from laser wakefields using an up-ramp density transition
Research Phys. Rev. Lett.
Publication Statistics
40+
Publications
~800
Total Citations
14
h-index
22
i10-index
My research spans plasma physics, laser-plasma interactions, particle acceleration, and AI/ML applications in scientific computing.