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Digital Hadron Calorimeter Cosmic Ray Test Stand As of 9am05/12/2003 Note: axes on scatter plots are reversed.

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Presentation on theme: "Digital Hadron Calorimeter Cosmic Ray Test Stand As of 9am05/12/2003 Note: axes on scatter plots are reversed."— Presentation transcript:

1 Digital Hadron Calorimeter Cosmic Ray Test Stand As of 9am05/12/2003 Note: axes on scatter plots are reversed

2 Status Multichannel system is working Good data on 13 channels but 3 channels very low gain 1 other channel has fiber damaged - only cladding damaged

3 Analysis Software Wrote my own software using Visual Basic to display data Can display by data by cell or by PMT channel Can switch between top layer and bottom layer of cells Show small histogram bin=5 Show large histogram bin=1 Primitive method of finding pedestal, pedestal cutoff, first peak cutoff Scatter plots of all data, data above pedestal cutoff, data above first peak cutoff

4

5 Ch4 vs No pedestal

6 No pedestal and no first curve

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8 First Peak: Single Photoelectron or Crosstalk?

9 Summary of Initial Results It is a primitive tracking calorimeter Most show two peaks one of them is close to pedestal Is first peak single photoelectron, crosstalk, or noise? Not noise because I took samples with all all photocathodes of PMT covered by black paper and only get narrow pedestal Crosstalk can be –optical crosstalk in cells –optical or electrical crosstalk in PMT

10 Four tests to determine cause of first peak Cover 8 channels with black paper Stimulate PMT channel with multiple fibers driven by LED to determine cross talk at PMT Cover 3 cells with black paper and put black paper between layers to reduce optical crosstalk between cells Stimulate cells with source

11 To test crosstalk at PMT Covered 2 columns of PMT photocathodes with black paper between photocathode and fiber Collect Cosmic Rays overnight

12 Crosstalk at PMT Standard configurationPhotocathodes 5-8 and 13-16 covered

13 Channel 4 stimulated by several fibers driven by LED Suggests crosstalk at PMT

14 3 6 2 4 8 7 5 14% 10% 11% 15% 5% 10% 5% 13%8% 6% 8% 7% Standard Configuration with no black paper Cells 5,8,6 covered by black paper layers separated by paper Effect of covering cells with black paper to reduce optical crosstalk between cells

15 Stimulating Cells with Sr 90 Source Source over cell 4 (center) If due to radiation or optical crosstalk we’d expect 6 and 8 to be the same since both are covered by black paper and cells are same distance from cell 4 The response at channel 8 is higher because it is closer to channel 4 at the PMT

16 Scatter plots with Sr 90 source over cell 4 Expect 6 and 8 to be the same since both are covered by black paper and cells are same distance from cell 4 Ch.8 is closer to 6 at PMT so effect is probably due to crosstalk at PMT

17 Summary Previous test indicate that first peak is partly due to optical crosstalk at cells and crosstalk at PMT Need to determine if PMT crosstalk is optical or electrical Need to quantify theses effects May be other effects to study

18 Next Steps Make quantitative measurements of different forms of crosstalk Enhance software Analyze data collected with absorber


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