mono Higgs to bb analysis

[parent]
DESCRIPTION:

Analysis Note found here: AN link
The analysis workbook can be found here: Workbook link
Working directory is here: login.hep.wisc.edu:/afs/hep.wisc.edu/home/slomte/monoHbb_coffea/monohiggs-analysis/

WORK LOG:


[June 17]
Update:
- Two categories Boosted and Resolved using AK8 FatJet and AK4 di-jets to reconstruct Higgs.
- MET and Mbb plots in Signal Region for both categories shown below for one fileset of 88k events.

Next Steps:
- Use full signal dataset (20.5M events). Getting a warning message 'RuntimeWarning: overflow encountered in multiply', look into this.
- Add background Z(vv)+Jets and ttbar to start with.
- **fix issue: for events not passing Resolved Category selections, filled with 'None' as data, it is mapped to the zero bin instead of skipping that event. Bin [0-10] skipped for plots below.
- Currently using 1pb signal cross-section, change this.

Questions:
- how to check mass parameters used for signal sample on DAS?

[June 24]
Update:
- Fixed 'None' issue for events not passing event selections which went into bin 0. This also resolved the warning message 'RuntimeWarning: overflow encountered in multiply' when using multiple signal files.
- Made kinematic distributions for jets in boosted and resolved category.
- Working on cutflow histogram plot (not straightforward in Coffea!).

Next steps:
- Make cutflow plot
- Make background plots

[July 1]
Update:
- Made background plots in Signal Region.
- Cutflow table for signal. - Found that mass parameters for signal process are stored in a branch in nanoaod root file.

Next steps:
- Working on cutflow plot.
- Add cross section for signal and overlay with background events.
- Add all background files, (need more statistics for boosted region).

[July 15]: Travelling, not much update.
[July 22]: Snowmass meetings, no analysis work.
[July 29]
Update:
-


Plots

0_ZpBaryonic_model.png

2017_PNetb...0_Chi1_wText.png

2018_PNetb...0_Chi1_wText.png

2_BoostedCat.png

2_ResolvedCat.png

AN_Mbb_BCat_SR_v6.png

BCat_cutflow.png

BCat_cutfl...owSelections.png

BCat_cutflow_test10g.png

BCat_cutflow_test8.png

Btag_Eff_S...SignalMCUL18.png

CutflowTable_Mar13.png

Cutflow_BC...18_nanoAODv7.png

Cutflow_BC...18_nanoAODv9.png

Cutflow_RC...tSR_nanoV7V9.png

Cutflow_na...7_v9_Test1ab.png

DiMuonPT_T...dHTDYsamples.png

DiMuon_Eta..._partialData.png

DiMuon_Phi..._partialData.png

DiMuon_pT_..._partialData.png

DijetPT_dR...andHTsamples.png

Dijet_Eta_..._partialData.png

Dijet_Phi_..._partialData.png

Dijet_pT_R...018_statband.png

Dijet_pT_partialData.png

FJet_pT_BC...atTopel_2018.png

FJet_pT_BC...atTopmu_2018.png

Limit_2D_s...2cn_wObsData.png

Limit_2D_s...FullRun2_all.png

METPhi_Tes..._BeforeAfter.png

MET_Phi_BC...atTopmu_2018.png

MET_Phi_RC...atTopmu_2018.png

MET_cut0_B...a18_testt10f.png

MET_cut0_B...ata_testt10f.png

MET_cut10_...a18_testt10f.png

MET_cut10_...ata_testt10f.png

MET_cut1_B...a18_testt10f.png

MET_cut1_B...ata_testt10f.png

MET_cut2_B...a18_testt10f.png

MET_cut2_B...ata_testt10f.png

MET_cut3_B...a18_testt10f.png

MET_cut3_B...ata_testt10f.png

MET_cut4_B...a18_testt10f.png

MET_cut4_B...ata_testt10f.png

MET_cut5_B...a18_testt10f.png

MET_cut5_B...ata_testt10f.png

MET_cut6_B...a18_testt10f.png

MET_cut6_B...ata_testt10f.png

MET_cut7_B...a18_testt10f.png

MET_cut7_B...ata_testt10f.png

MET_cut8_B...a18_testt10f.png

MET_cut8_B...ata_testt10f.png

MET_cut9_B...a18_testt10f.png

MET_cut9_B...ata_testt10f.png

MET_pT_BCa...atTopmu_2018.png

MET_pT_JER...n_cms01_full.png