HFT: cuts studies for Λc reconstruction
Same strategy as for D+ :
- study the track significance St = DCA/σDCA for background (hijing files used for mixing) and for signal; (single Λc per event, power-law pt, 50k)
- once a possible cut is found, run the analysis code with this cut and study the distance of daughters to secondary vertex (dca1V)
- once a possible cut is found, rerun over the whole sample
1. track significance St = DCA/σDCA
Fig. 1 : St distribution for various cuts
[all the plots below are done for the kaon daughter]
Fig. 2 : same as Fig.1 but zoomed.
A possible cut (right panel) is St > 1.5
note : it's lower than for the D+ cut.
I also check that the pt distribution of tracks is the same , otherwise the cut could be biased
Fig. 3 : Pt distribution of kaon daughter
2. DCA of daughters to the secondary vertex
Fig. 4 : DCA of daughters to secondary vertex for background and signal
Fig. 5 : DCA of daughters to secondary vertex for background and signal with same cuts when running the analysis code
Fig. 5 is integrated over all Pt but a possible cut would be DCASV < 40 μm
3. Preliminary plots for Λc
As mentioned previously, I've run with the following cuts :
- signs of tracks fixed
- St = DCA/σ > 1.5
- dcaSV < 50 μm (I kept it loose for a first pass)
- not all data (~7.5k over 10k events)
Fig. 6 : invariant mass for several cuts combinations [see text below]
From left to right , top to bottom :
- |nσ|< 2
- |nσ|< 2 && DecayLength > 100 μm
- |nσ|< 2 && DecayLength > 200 μm
- |nσ|< 2 && DecayLength/σDecayLength >0
- |nσ|< 2 && DecayLength/σDecayLength >5
- |nσ|< 2 && DecayLength/σDecayLength >7
Fig. 7 : same as Fig. 6 but with the constraint DCASV [of daughters] < 40 μm [was < 50 μm for Fig. 6]
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