DTC optimization: Difference between revisions

From pCT
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{| class="wikitable"
{| class="wikitable"
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! Material !! Thickness !! Resolution !! Add'l resolution !! Layers for 230 MeV + <math>5\sigma</math>
! Material !! Thickness !! Resolution !! Over straggling !! Add'l resolution !! Layers for 230 MeV + <math>5\sigma</math>
|-
|-
| Al|| 2 mm || 4.16 mm || 1.38 mm || 67
| Al|| 2 mm || 4.16 mm || 1.06% ||  1.38 mm || 67
|-
|-
| Al|| 3 mm || 4.26 mm || 1.69 mm || 48
| Al|| 3 mm || 4.26 mm || 1.09% || 1.69 mm || 48
|-
|-
| Al|| 4 mm ||  ||  ||
| Al|| 4 mm ||  ||  || ||
|-
|-
| Al|| 5 mm ||  ||  ||
| Al|| 5 mm ||  ||  || ||
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|-
| Al|| 6 mm ||  ||  ||
| Al|| 6 mm ||  ||  || ||
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| Al|| 7 mm ||  ||  ||
| Al|| 7 mm ||  ||  || ||
|}
|}



Revision as of 09:56, 22 March 2017

Geometry and segmentation optimization of the Digital Tracking Calorimeter

Optimization philosophy

Geometry

Geometry.PNG

Materials

Software

The software for this project is Gate installation and the DTC toolkit. For a complete guide to use the software for optimization, see the page Software for design optimization.

Results

Material Thickness Resolution Over straggling Add'l resolution Layers for 230 MeV + [math]\displaystyle{ 5\sigma }[/math]
Al 2 mm 4.16 mm 1.06% 1.38 mm 67
Al 3 mm 4.26 mm 1.09% 1.69 mm 48
Al 4 mm
Al 5 mm
Al 6 mm
Al 7 mm


Resolution 2mm.png

Resolution 3mm.png