Difference between revisions of "Beamline design (G. Stancari)"

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|Q1 || 20 || 13
 
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|G2 || 50 ||7
 
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|Q3 || 60 || 13  
 
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|G3 || 75.8 ||18.6
 
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|D1 || 100.1 || 30  
 
|D1 || 100.1 || 30  
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|G3 || 125.8 ||21.4
 
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|Q4 || 141.5 ||  10  
 
|Q4 || 141.5 ||  10  
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|G4 || 151.5 ||  10
 
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|Q5 || 161.5 ||10
 
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|G5 || 171.5 ||  10
 
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|Q6 || 181.5 || 10  
 
|Q6 || 181.5 || 10  
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|G6 || 211.95 ||  50.9
 
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|D2 || 252.4 || 30  
 
|D2 || 252.4 || 30  
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|G7 || 294.25 ||  53.7
 
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|Q7 || 326.1 || 10  
 
|Q7 || 326.1 || 10  
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|G8 || 336.1 ||  10
 
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|Q8 || 346.1 || 10  
 
|Q8 || 346.1 || 10  
 
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|Q9 || 366/2 || 10  
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|G8 || 356.1 ||  10
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|Q9 || 366.1 || 10  
 
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Latest revision as of 23:07, 9 June 2009

This is a proposed design for an electron, positron and photon beamline at the HRRL lab. The project is described in this note (also available as LaTeX source).

Proposed HRRL floor plan: DXF or PDF
HPBv1 layout.png

Beamline optics was designed using MAD-X:

  • MAD input file, including element definitions, beamline layout, and quad strength optimization.

Results are available as

HPBv3 CoSn.png

HPBv3 phase.png

HPBv3 prof.png

Stancari 09:49, 28 May 2009 (MDT)


T Forest adaptation of Stancari Design

List of beam line elements

Device Location (cm) beam line breadth (cm)
Q1 20 13
G1 30 7
Q2 40 13
G2 50 7
Q3 60 13
G3 75.8 18.6
D1 100.1 30
G3 125.8 21.4
Q4 141.5 10
G4 151.5 10
Q5 161.5 10
G5 171.5 10
Q6 181.5 10
G6 211.95 50.9
D2 252.4 30
G7 294.25 53.7
Q7 326.1 10
G8 336.1 10
Q8 346.1 10
G8 356.1 10
Q9 366.1 10

Q => Quad, D => Dipole, G=> drift gap


Positrons