Difference between revisions of "Wiki-page for E12-11-112"
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= December 2017 = | = December 2017 = | ||
Beam Energy: 1 pass (2.216 GeV) | Beam Energy: 1 pass (2.216 GeV) | ||
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Targets: 3H, 3He, 2H, 1H | Targets: 3H, 3He, 2H, 1H | ||
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+ | Run plan: [https://docs.google.com/spreadsheets/d/1LE0K4jgPMolJvvj33uXu9v-OLi_FKqjZokoChkLLNaA/edit?usp=sharing spreadsheet] | ||
== Calibration Runs == | == Calibration Runs == | ||
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= Meetings = | = Meetings = | ||
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* [https://wiki.jlab.org/tegwiki/index.php/Tritium-isospin_(E12-11-112)_Analysis_Meetings#Analysis_Meetings_2018 weekly analysis meeting ] | * [https://wiki.jlab.org/tegwiki/index.php/Tritium-isospin_(E12-11-112)_Analysis_Meetings#Analysis_Meetings_2018 weekly analysis meeting ] | ||
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+ | = How-to Documentation = | ||
+ | * [https://data.jlab.org/drupal/ How to get most of the scientific software setup in your Jlab CUE] | ||
+ | * [http://hallaweb.jlab.org/podd/doc/index.html Getting started with the Hall A analyzer] | ||
= Links = | = Links = |
Revision as of 15:09, 12 August 2018
Overview
E12-011-112 (x>1) at Hall A is proposed to precisely measure the isospin dependence of two-nucleon short range correlations using mirror nuclei 3H and 3He. More details can be found in the PAC38 Proposal and Patricia's web page.
Trigger configuration
- All run were taken at single arm mode ( inclusive e' ).
LHRS (run number <20000):
T1: S0 && S2 T2: (S0 && S2) && Cer T3: (S0 || S2) && Cer
RHRS (run number >90000):
T4: S0 && S2 T5: (S0 && S2) && Cer T6: (S0 || S2) && Cer
December 2017
Beam Energy: 1 pass (2.216 GeV)
Targets: 3H, 3He, 2H, 1H
Run plan: spreadsheet
Calibration Runs
- BPM
- BCM
- Optics
Run number | Description |
---|---|
757, 758 | LHRS BPM pedestal runs |
90357, 90358 | RHRS BPM pedestal runs |
805 - 810 | LHRS harp scan |
90595- 90600 | RHRS harp scan |
814 - 819 | LHRS BCM calibration |
90604- 90608 | RHRS BCM calibration |
Production Runs
Run number | Angle (degree) | Momentum (GeV) |
---|---|---|
809 - 924 | 17 | 2.0 |
932 - 949 | 22 | 1.805 |
Meetings
How-to Documentation
- How to get most of the scientific software setup in your Jlab CUE
- Getting started with the Hall A analyzer