Improving FEM-Based Solid Mechanics Simulations for Ultrashort Pulse Laser Ablation by Integrating an Equation of State and Material Separation
<p>Simulation results (raw data), COMSOL simulation files and Python evaluation scripts for the publication entitled "Two-Temperature Solid Mechanics Model incorporating an Equation of State for Readily Accessible Ultrashort Pulse Laser Ablation Simulations".</p><p> </p><p>Descripton folders:</p><p>Example for nomenclature: SM-EOS_005_F075</p><p>- SM -> solid mechanics (comsol simulation)</p><p>- EOS -> simulation with parameters from EOS, respectively ISO -> simulation with iso-parameters</p><p>- 005 -> pulselength of 0.5 ps</p><p>- F075 -> Fluence: 0.75 * threshold fluence</p><p> </p><p>Structure .txt files:</p><p>- first 8 rows header</p><p>- delemiter = ','</p><p>- first column is the depth in nm, following columns are the Values of the parameter (each column = 0.1 ps time step)</p><p>- start time = 2 * pulselength, end time = 100 ps</p><p> </p><p>Values:</p><p>Electron Temperature T_EL.txt in kK</p><p>Lattice Temperature T_IO.txt in kK</p><p>Pressure P.txt in GPa</p><p>displacement.txt in nm</p><p>Density rho.txt in g/cc</p><p>phase.txt (1 = solid, 2 = solid+liquid, 3 = liquid, 4 = liquid+gas, 5 = gas, negative sign = metastable)</p><p>condTrans.txt (1 = solid and 0 = liquid)</p>
ShareScore
20/100
Overall dataset sharing score
Score breakdown
These five areas show where the dataset supports — or may limit — practical reuse.
- Stewardship
- 8
- Harmonization
- 4
- Access
- 8
- Reuse readiness
- 0
- Engagement
- 0