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T. Burnett: PSF status 3Feb061 DC2 PSF Status The function: 8 bins in energy (2/decade), 6 in cos(  ) (0.1) Two classes A: GoodEvent3; C: GoodEvent1 &&

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Presentation on theme: "T. Burnett: PSF status 3Feb061 DC2 PSF Status The function: 8 bins in energy (2/decade), 6 in cos(  ) (0.1) Two classes A: GoodEvent3; C: GoodEvent1 &&"— Presentation transcript:

1 T. Burnett: PSF status 3Feb061 DC2 PSF Status The function: 8 bins in energy (2/decade), 6 in cos(  ) (0.1) Two classes A: GoodEvent3; C: GoodEvent1 && ! GoodEvent3; Apply scaling function of energy to angular deviations to make the 68% values for approximately 1. (The “Atwood function) Objective: to find reasonable parametric representation in E and cos  of  and 

2 T. Burnett: PSF status 3Feb062 Fits to the function 8 bins in energy (2/decade), 8 in cos(  ) (0.1) Two classes so far differ in CTBCORE cut. also (front/back) A: GoodEvent3; C: GoodEvent1 && ! GoodEvent3; Combine the two data sets Apply scaling function of energy to make 68% values approximately 1. Stop fit at 10 (scaled) sigma

3 T. Burnett: PSF status 3Feb063 Class A front: Near normal fits for all energies

4 T. Burnett: PSF status 3Feb064 The parameters: polynomial fits 68%   95%

5 T. Burnett: PSF status 3Feb065 Angular dependence: mild class A front

6 T. Burnett: PSF status 3Feb066 What about those Class B guys? Clearly energy-dependent

7 T. Burnett: PSF status 3Feb067 Check integral distributions: compare A, C front currently a mystery factor of 2!

8 T. Burnett: PSF status 3Feb068 To Do Continue checking Decide on strategy: Table look-up Smooth functions


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