HPC Gaussian
Treat Gaussian as a staged quantum-chemistry workflow built around a valid input deck and explicit checkpoint policy.
Start
- Read
references/workflow-manual.mdbefore creating or editing a Gaussian input file. - Read
references/input-and-link0-matrix.mdwhen mapping Link 0 directives, route keywords, title, charge, multiplicity, and geometry blocks. - Read
references/geometry-charge-spin.mdwhen the structure, charge, multiplicity, or fragment logic is uncertain. - Read
references/method-basis-and-jobtype.mdwhen choosing the method, basis set, and job type. - Read
references/scf-opt-freq-and-solvation.mdwhen choosing SCF, optimization, frequency, or solvent settings. - Read
references/checkpoint-restart-and-artifacts.mdwhen designing checkpoint, restart, formatted-checkpoint, or cube workflows. - Read
references/cluster-execution-playbook.mdwhen staging a Gaussian workflow for scheduler-backed cluster execution. - Read
references/error-recovery.mdwhen parsing, SCF, optimization, frequency, or restart behavior fails.
Additional References
Load these on demand:
references/error-pattern-dictionary.mdfor structured SCF, geometry, and restart failure signatures
Reusable Templates
Use assets/templates/ when a concrete starting input is needed, especially:
sp_water.gjfopt_freq_water.gjfgaussian-g16-slurm.sh
Guardrails
- Do not invent Gaussian keywords or Link 0 directives.
- Do not treat charge and multiplicity as cosmetic metadata.
- Do not run restart-sensitive workflows without an explicit checkpoint policy.
- Do not copy route sections from unrelated systems without checking method, basis, and job intent.
Outputs
Summarize:
- job type
- method and basis selection
- charge and multiplicity
- checkpoint or restart policy
- expected key outputs and next stage
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