Difference between revisions of "GPT/IBSimu Benchmarking Checklist"
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− | Checklist for GPT/IBSimu simulations and benchmarking | + | Checklist for GPT/IBSimu simulations and benchmarking ionization routine |
− | == | + | ==Done== |
− | + | *Centering electron bunch through 1.5m | |
+ | *Ion production rate benchmarked | ||
− | + | ==In Progress== | |
− | + | *DC Beam Simulations | |
+ | *Using Maxwellian distribution for ion energies | ||
− | == | + | ==To Be Done== |
− | + | *Benchmarking secondary electron production | |
+ | *Create (simple) simulation for benchmarking using everything (ionization, gun E-field, real B-field values, same initial distribution, etc.) | ||
+ | *For GPT: | ||
+ | **Use local vacuum data in ionization routine (instead of assuming constant gas density) | ||
+ | **Derive approximation for SEDCS for gas species other than H2 and He | ||
+ | **Working with Bas to ensure space charge routine works correctly/accurately | ||
− | |||
− | + | [[Ionization Effects Meetings | Go to Ionization Effects Meetings]] | |
+ | |||
+ | [[Ionization Effects | Return to Ionization Effects]] |
Revision as of 09:00, 2 April 2020
Checklist for GPT/IBSimu simulations and benchmarking ionization routine
Done
- Centering electron bunch through 1.5m
- Ion production rate benchmarked
In Progress
- DC Beam Simulations
- Using Maxwellian distribution for ion energies
To Be Done
- Benchmarking secondary electron production
- Create (simple) simulation for benchmarking using everything (ionization, gun E-field, real B-field values, same initial distribution, etc.)
- For GPT:
- Use local vacuum data in ionization routine (instead of assuming constant gas density)
- Derive approximation for SEDCS for gas species other than H2 and He
- Working with Bas to ensure space charge routine works correctly/accurately