核心课程(示例)Selected coursework
流体力学 92 · 电工电子学 92 · 燃烧与爆炸学 95 · 弹性力学 90Fluid Mechanics 92 · Electrical & Electronics 92 · Combustion & Explosion 95 · Elasticity 90
数学/物理基础Math/Physics foundation
高等数学 91 · 大学物理 87 · C 语言程序设计 86Calculus 91 · General Physics 87 · C Programming 86
Fortran
Python (PCEP)
C / MATLAB
Mathematica / Origin
COMSOL
英文文献阅读English reading
研究亮点Research Highlights
概览High-signal summary
流体不稳定性:ICF / 超新星相关内爆问题
Fluid instabilities in ICF / astrophysical implosions
HEDP / ICF
聚焦界面不稳定性(Rayleigh–Taylor 等)在高能量密度环境中的增长机理与数值模拟。
Focus on interface instabilities (e.g., Rayleigh–Taylor) in high-energy-density environments via numerical simulation.
- 三维建模与程序工程化(Fortran 总程序改进)
- 3D modeling and code engineering (refactoring/improving a Fortran main program)
- 对比不同物理因素对增长率/形态演化的影响(含磁场耦合方向)
- Comparative studies on growth rate / morphology evolution under different physics (including MHD coupling)
LHCb:pp 碰撞中 BD 关联产生与衰变道研究
LHCb: BD associated production & decay-channel studies
Heavy Flavor
参与重味强子物理分析:关联产生截面、衰变道搜索、DPS 相关问题等。
Contribute to heavy-flavor analyses: associated production cross sections, decay-channel searches, and DPS-related topics.
- 数据/MC 分析流程:选择、拟合、效率、系统误差等(可补充你最强项)
- Data/MC workflow: selection, fitting, efficiency, systematic uncertainties (add your strongest parts)
- 可复现产出与文档化,保持与合作组规范一致
- Reproducible outputs and documentation aligned with collaboration conventions