secondary beam analysis – ps and sps
DESCRIPTION
Secondary beam analysis – PS and SPS. Started May 22, 2012. rpc / PS_pion pion_2.f pion_11.kumac or pion_11_1GeV.kumac. Event selection all: 1 cluster in layer 0 with at most 3 hits electrons: C1 = C2 =1 pions: C1 = C2 = 0 and BC 20 and C1 = C2 = 0 and BC>20 - PowerPoint PPT PresentationTRANSCRIPT
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Secondary beam analysis – PS and SPS
Started May 22, 2012
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rpc/PS_pionpion_2.fpion_11.kumac orpion_11_1GeV.kumac
Event selection
all: 1 cluster in layer 0 with at most 3 hits
electrons: C1 = C2 =1 pions: C1 = C2 = 0 and BC<8 muons: N > 20 and C1 = C2 = 0 and BC>20 Hits in last 2 layers
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Not enough memory for run 109
Event selection
all: 1 cluster in layer 0 with at most 3 hits
electrons: C1 = C2 =1 and BC < 8 pions: C1 = C2 = 0 and BC<8 muons: N > 10 and C1 = C2 = 0 and BC>20 Hits in last 2 layers
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Event selection
all: 1 cluster in layer 0 with at most 3 hits
electrons: C1 = C2 =1 and BC < 8 pions: C1 = C2 = 0 and BC<8 muons: N > 10 and C1 = C2 = 0 and BC>20 Hits in last 2 layers
![Page 5: Secondary beam analysis – PS and SPS](https://reader035.vdocuments.us/reader035/viewer/2022062314/56813c35550346895da5b559/html5/thumbnails/5.jpg)
Event selection
all: 1 cluster in layer 0 with at most 3 hits
electrons: C1 = C2 =1 and BC < 8 pions: C1 = C2 = 0 and BC<8 muons: N > 10 and C1 = C2 = 0 and BC>20 Hits in last 2 layers
![Page 6: Secondary beam analysis – PS and SPS](https://reader035.vdocuments.us/reader035/viewer/2022062314/56813c35550346895da5b559/html5/thumbnails/6.jpg)
Event selection
all: 1 cluster in layer 0 with at most 3 hits
electrons: C1 = C2 =1 and BC < 8 pions: C1 = C2 = 0 and BC<8 muons: N > 10 and C1 = C2 = 0 and BC>20 Hits in last 2 layers
![Page 7: Secondary beam analysis – PS and SPS](https://reader035.vdocuments.us/reader035/viewer/2022062314/56813c35550346895da5b559/html5/thumbnails/7.jpg)
Event selection
all: 1 cluster in layer 0 with at most 3 hits
electrons: C1 = C2 =1 and BC < 8 pions: C1 = C2 = 0 and BC<8 muons: N > 10 and C1 = C2 = 0 and BC>20 Hits in last 2 layers
![Page 8: Secondary beam analysis – PS and SPS](https://reader035.vdocuments.us/reader035/viewer/2022062314/56813c35550346895da5b559/html5/thumbnails/8.jpg)
Event selection
all: 1 cluster in layer 0 with at most 3 hits
electrons: C1 = C2 =1 and BC < 8 pions: C1 = C2 = 0 and BC<8 muons: N > 10 and C1 = C2 = 0 and BC>20 Hits in last 2 layers
![Page 9: Secondary beam analysis – PS and SPS](https://reader035.vdocuments.us/reader035/viewer/2022062314/56813c35550346895da5b559/html5/thumbnails/9.jpg)
Event selection
all: 1 cluster in layer 0 with at most 3 hits
electrons: C1 = C2 =1 and BC < 8 pions: C1 = C2 = 0 and BC<8 muons: N > 10 and C1 = C2 = 0 and BC>20 Hits in last 2 layers
![Page 10: Secondary beam analysis – PS and SPS](https://reader035.vdocuments.us/reader035/viewer/2022062314/56813c35550346895da5b559/html5/thumbnails/10.jpg)
Event selection
all: 1 cluster in layer 0 with at most 3 hits
electrons: C1 = C2 =1 and BC < 8 pions: C1 = C2 = 0 and BC<8 muons: N > 10 and C1 = C2 = 0 and BC>20 Hits in last 2 layers
![Page 11: Secondary beam analysis – PS and SPS](https://reader035.vdocuments.us/reader035/viewer/2022062314/56813c35550346895da5b559/html5/thumbnails/11.jpg)
Event selection
all: 1 cluster in layer 0 with at most 3 hits
electrons: C1 = C2 =1 and BC < 8 pions: C1 = C2 = 0 and BC<8 and R > 2.0 muons: N > 10 and C1 = C2 = 0 and BC>20 Hits in last 2 layers
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rpc/PS_pion/PS_summary.kumac
No calibration whatsoever Calibration with muon response
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Fits
EE
cEE
cEEE
β α c
Fit 1 65.67± 0.1
Fit 2 61.3± 0.3 11.0± 0.3
Fit 3 0.0 ± 2.9 61.3 ± 0.2 11.0 ± 0.2
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Calibration study
N
NNN Calib
0
α=0.4This is interesting. It appears that a linear calibration does not work as well as a calibration attenuated by a power…
rpc/PS_pion/PS_summary_alpha.kumacruns calib_1.f
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Positive beam rpc/PS_pionpion_2.fpion_11_pos.kumac
Event selection
all: 1 cluster in layer 0 with at most 3 hits
electrons: C1 = C2 =1 and BC < 8 pions: C1 = 0 and C2 = 1 and BC<8 and R > 2.0 protons: C1 = 0 and C2 = 0 and BC<8 and R > 2.0 muons: N > 10 and C1 = 0 and C2 = 1 and BC>20 and Hits in last 2 layers and r<2.0
Run 660177
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Run 660178
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Event selection
all: 1 cluster in layer 0 with at most 3 hits
electrons: C1 = C2 =1 and BC < 8 pions: C1 = 0 and C2 = 1 and BC<8 and R > 2.0 protons: C1 = 0 and C2 = 0 and BC<8 and R > 2.0 muons: N > 10 and C1 = 0 and C2 = 1 and BC>20 and Hits in last 2 layers and r<2.0
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Event selection
all: 1 cluster in layer 0 with at most 3 hits
electrons: C1 = C2 =1 and BC < 8 pions: C1 = 0 and C2 = 1 and BC<8 and R > 2.0 protons: C1 = 0 and C2 = 0 and BC<8 and R > 2.0 muons: N > 10 and C1 = 0 and C2 = 1 and BC>20 and Hits in last 2 layers and r<2.0
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Event selection
all: 1 cluster in layer 0 with at most 3 hits
electrons: C1 = C2 =1 and BC < 8 pions: C1 = 0 and C2 = 1 and BC<8 and R > 2.0 protons: C1 = 0 and C2 = 0 and BC<8 and R > 2.0 muons: N > 10 and C1 = 0 and C2 = 1 and BC>20 and Hits in last 2 layers and r<2.0
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β α c
Fit 1 65.67± 0.1
Fit 2 61.3± 0.3 11.0± 0.3
Fit 3 0.0 ± 2.9 61.3 ± 0.2 11.0 ± 0.2
p fit 54.4 ± 0.6 20.2 ± 1.7
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SPS Run Plan
Rates
Spills of 9 seconds every 45 seconds -> 720 seconds/hour or 17,280 seconds/day At 50 GeV assume maximum of 100 Hz -> 72,000 events/hour or 1,728,000 events/day At 100 GeV assume maximum of 50 Hz -> 36,000 events/hour or 864,000 events/day
Data sets
Assume minimum of 500,000 events per energy point
Overall plan
Start June 4th in evening (days start at 8 am) 4,5,7,8 -> -50 GeV 6 -> Machine development 9,10, 11, 12 -> -180 13,14,15,16,17 -> +180
July 30 - August 6 -> 7 days: muons, (+180 GeV), high energy run (<300 GeV) November 2-9 -> 7 days: muons (+180 GeV), reserve or high energy again
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-120 GeV running (4.5 days)
50, 40 (e and pions), {30 (e and pions),} 60, 80, 100, 120
-180 GeV running (2 days)
120, 150, 180
-30 GeV running (1 day)
{30 (e and pions),} 20 (e and pions), {10 (e and pions)}
+180 GeV running (5 days)
Muons 60, 70, 80, 90 (with Cerenkov tagging of pions) 120, 150, 180
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660217
Event selection
all: 1 cluster in layer 0 with at most 3 hits
pions: C1 = 0 and C2 = 0 and IL>2 and and no hits in last 4 layersmuons: BC>20 and Hits in last 4 layers and r<3.0 𝜎
𝐸=
89.2%√𝐸
𝜎𝐸
=95.5 %√𝐸
660211
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660224
Event selection
all: 1 cluster in layer 0 with at most 3 hits
pions: No hits in last 4 layersmuons: BC>20 and hits in last 4 layers and r<3.0 𝜎
𝐸=
97.3%√𝐸
𝜎𝐸
=98.2%√𝐸
660223
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660227
Event selection
all: 1 cluster in layer 0 with at most 3 hits
pions: No hits in last 4 layersmuons: BC>20 and hits in last 4 layers and r<3.0 𝜎
𝐸=
105.6 %√𝐸
𝜎𝐸
=106.6%√𝐸
660226
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660229
Event selection
all: 1 cluster in layer 0 with at most 3 hits
pions: No hits in last 4 layersmuons: BC>20 and hits in last 4 layers and r<3.0 𝜎
𝐸=
105.9 %√𝐸
𝜎𝐸
=106.7 %√𝐸
660228
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June 7, 2012Study of time difference
- Some hits far off in both + and – direction- From now on, only take -18,-19
fort.91pion_19.kumac
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𝜎𝐸
=117.9%√ 𝐸
660233
Event selection
all: 1 cluster in layer 0 with at most 3 hits
pions: No hits in last 4 layersmuons: BC>20 and hits in last 4 layers and r<3.0
𝜎𝐸
=116.8 %√ 𝐸
660234
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Momentum # of events
30 692,285
40 325,803
50 886,201
60 362,840
80 0
100 0
120 15,476
TOTAL 2,282,705
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Event selection
all: 1 cluster in layer 0 with at most 3 hits
pions: No hits in last 4 layersmuons: BC>20 and hits in last 4 layers and r<3.0
𝜎𝐸
=116.7 %√𝐸
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