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BESIII Cell-type EMC Photon Position Measurement Zhe Wang Mar. 2004.

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Presentation on theme: "BESIII Cell-type EMC Photon Position Measurement Zhe Wang Mar. 2004."— Presentation transcript:

1 BESIII Cell-type EMC Photon Position Measurement Zhe Wang Mar. 2004

2 Contents:  Introduction to Belle’s method  Introduction to BaBar’s methods  Other methods …  A MC prototype ‘Matrix’  Analysis and understanding  Conclusion

3 Introduction to Belle’s method  Corrected center of gravity  Formula  Position correction By a detailed calibrated complicated function. By a detailed calibrated complicated function. And few dependence on θ and energy is found. And few dependence on θ and energy is found.  For correction only a few dependence on energy and theta is found.

4 Introduction to BaBar’s methods  Center of gravity  Logarithmic weight method usually a≈4 usually a≈4 Some points will be dropped. Some points will be dropped.  A mixing of these two methods  Now we can only check its result from its original tests.

5 Others (E852)  A weighted mean:  Comparison done by E852 Optimization is done. But correction maybe not. Optimization is done. But correction maybe not.

6 Others (BaBar’s method comes from here.) NIM A311 (1992) 130

7 Others (GAMS) one-dimension  Shower profile  Methods: 1. corrected center of gravity 1. corrected center of gravity 2. 2. The ith cell = center cell The ith cell = center cell 3. 3.

8 Others (GAMS) two-dimension  Shower profile  Method

9 Others (GAMS-200)  Direct Access  Method: Four crystals are concerned: Four crystals are concerned: the Max. the Max. biggest horizontal neighbor biggest horizontal neighbor biggest vertical neighbor biggest vertical neighbor the fourth to form a box the fourth to form a box

10 A MC prototype ‘Matrix’

11  A 7×7 CsI crystal matrix in air  Each cell: 5cm ×5cm ×28cm  Gun: 100Mev—1.2GeV photon at (x,y,-1)m (x,y  [0,2.5] flat distribution) at (x,y,-1)m (x,y  [0,2.5] flat distribution) along direction of z axis along direction of z axis

12 Analysis and understanding  Shower lateral profile: and  Shower lateral profile: MACRO and micro Ratios of two counters: i: coordinate index for column or row 1. Clear target (relationship between signal ratios and position) 2. And easy realization. Density function: 1. Care more details. (cell structure, wrapping) 2. Analogous to heat dispersion in a plane. 3. Integration and fit need more CPU time.

13 Analysis and understanding Three kinds of methods: Weighted mean Guess a usable weight Fit Fitting based on 2- dimension distribution Experiment calibrated formula Directly find the relationship between the ratio of two signals and x from experiment

14 Analysis and understanding (MC)

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17 Linear weight and logarithmic weight

18 Conclusion  After some rough comparison and study, three easy methods will be realized first. They are: They are:  Linear weighted mean  Logarithmic weighted mean  Experiment calibrated function


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