Difference between revisions of "Beam Centering"

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[https://wiki.jlab.org/tegwiki/index.php/Installation_and_Commissioning <b>Back to Installation and Commissioning</b>]
 
[https://wiki.jlab.org/tegwiki/index.php/Installation_and_Commissioning <b>Back to Installation and Commissioning</b>]
  
==== Beam Centering procedure WITH spot++ ====
+
==== Beam Centering procedure WITH spotL ====
 
<ol>
 
<ol>
 
<li> Move target to None Target
 
<li> Move target to None Target
 
<li> request 5uA beam with 2x2 raster
 
<li> request 5uA beam with 2x2 raster
 
     <ol type='a'>
 
     <ol type='a'>
     <li> note scaler rates for s0, GC sum, & shower sum
+
     <li> note scaler rates for s0, GC sum, & shower sum - take a scaler snapshot
     <li> Scaler rates with cosmic
+
     <li> Scaler rates with cosmics
 
[https://logbooks.jlab.org/entry/3489114 LHRS scalers]
 
[https://logbooks.jlab.org/entry/3489114 LHRS scalers]
 
[https://logbooks.jlab.org/entry/3488877 RHRS scalers]
 
[https://logbooks.jlab.org/entry/3488877 RHRS scalers]
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<li> Move target to Carbon Hole
 
<li> Move target to Carbon Hole
 
<li> request 5uA beam with 2x2 raster
 
<li> request 5uA beam with 2x2 raster
<li> Take data, run spot++, look for hole on 2d plot
+
<li> Run CODA to take data, run spotL, look for hole on Tritium_run#.pdf
<li> Compare spot ++ with examples
+
<li> Compare spot ++ with example  [https://logbooks.jlab.org/entry/3464404 spotL Example]
[https://logbooks.jlab.org/entry/3464404 spot ++]
 
 
     <ul>
 
     <ul>
     <li> If: the square of the beam spot is visible, but the hole is not
+
     <li> If: the square of the beam spot is visible, but the hole is not : [https://logbooks.jlab.org/files/2016/10/3432519/snapshot_1.png Example 2]
 
     <ol type='a'> <li> move the beam 2mm in any direction and return to step 4 </ol>
 
     <ol type='a'> <li> move the beam 2mm in any direction and return to step 4 </ol>
 
     <li> Else If: the hole is visible in the square beam spot
 
     <li> Else If: the hole is visible in the square beam spot
     <ol type='a'> <li> center the hole in the square by moving the beam </ol>
+
     <ol type='a'> <li> center the hole in the square by moving the beam  
 +
  <li> Should look like this [https://logbooks.jlab.org/entry/3504068 spotL]
 +
</ol>
 
     <li> Else If: the beam spot doesn't look right
 
     <li> Else If: the beam spot doesn't look right
 
     <ol type='a'> <li> Tell the Run Coordinator!
 
     <ol type='a'> <li> Tell the Run Coordinator!
                   <li> Proceed to "Coarse Beam Centering WITHOUT spot++" </ol>
+
                   <li> Proceed to "Coarse Beam Centering WITHOUT spotL" </ol>
 
     </ul>
 
     </ul>
 
<li> Proceed to "Raster Target Check"
 
<li> Proceed to "Raster Target Check"
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</ol>
 
</ol>
  
==== Coarse Beam Centering procedure WITHOUT spot++: ====
+
==== Coarse Beam Centering procedure WITHOUT spotL: ====
 
<span style="color:red"> CALL RC BEFORE EXECUTING THIS PROCEDURE. YOU SHOULD NORMALLY USE SPOT++ INSTEAD </span>
 
<span style="color:red"> CALL RC BEFORE EXECUTING THIS PROCEDURE. YOU SHOULD NORMALLY USE SPOT++ INSTEAD </span>
 
<ol>
 
<ol>
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       <li> If 4a ~ 2a:
 
       <li> If 4a ~ 2a:
 
         <ol type='a'> <li> Congratulations! The beam center is within 2mm of target center!
 
         <ol type='a'> <li> Congratulations! The beam center is within 2mm of target center!
         <li> Proceed to "Fine Beam Centering WITHOUT spot++" </ol>
+
         <li> Proceed to "Fine Beam Centering WITHOUT spotL" </ol>
 
       <li> Else If 4a > 2a:
 
       <li> Else If 4a > 2a:
 
         <ol type='a'> <li> The beam is hitting the carbon
 
         <ol type='a'> <li> The beam is hitting the carbon
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                   <li> note beam position (x,y) </ol>
 
                   <li> note beam position (x,y) </ol>
 
<li> use 5c(x,y), 7a(x,y), and 8c(x,y) to calculate the center of the circular carbon target
 
<li> use 5c(x,y), 7a(x,y), and 8c(x,y) to calculate the center of the circular carbon target
<li> Proceed to "Fine Beam Centering WITHOUT spot++"
+
<li> Proceed to "Fine Beam Centering WITHOUT spotL"
 
</ol>
 
</ol>
  
  
==== Fine Beam Centering WITHOUT spot++: ====
+
==== Fine Beam Centering WITHOUT spotL: ====
<span style="color:red"> CALL RC BEFORE EXECUTING THIS PROCEDURE. YOU SHOULD NORMALLY USE SPOT++ INSTEAD </span>
+
<span style="color:red"> CALL RC BEFORE EXECUTING THIS PROCEDURE. YOU SHOULD NORMALLY USE SPOTL INSTEAD </span>
 
<ol>
 
<ol>
 
<li> Request 5uA unrastered beam
 
<li> Request 5uA unrastered beam
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==== Raster Target Check: ====
 
==== Raster Target Check: ====
 
<ol>
 
<ol>
 +
<li> Move to Home
 +
<li> Request 5uA, unrastered beam, note T1 scaler rate
 
<li> Move to Raster Target
 
<li> Move to Raster Target
<li> Request 5uA, unrastered beam, note scaler rates
+
<li> Request 5uA, unrastered beam, note T1 scaler rate
<li> Request 5uA, 2x2 rastered beam, note scaler rates
+
<li> Request 5uA, 2x2 rastered beam, note T1 scaler rates
<li> If the rates are similar, proceed with data taking
+
<li> If all three rates are similar and low (~few Hz), proceed with data taking
<li> If the rastered rate is higher, repeat beam-centering procedure
+
<li> If the rastered rate is higher, call RC and repeat beam-centering procedure

Latest revision as of 17:40, 16 December 2017

Back to Installation and Commissioning

Beam Centering procedure WITH spotL

  1. Move target to None Target
  2. request 5uA beam with 2x2 raster
    1. note scaler rates for s0, GC sum, & shower sum - take a scaler snapshot
    2. Scaler rates with cosmics LHRS scalers RHRS scalers
  3. Move target to Carbon Hole
  4. request 5uA beam with 2x2 raster
  5. Run CODA to take data, run spotL, look for hole on Tritium_run#.pdf
  6. Compare spot ++ with example spotL Example
    • If: the square of the beam spot is visible, but the hole is not : Example 2
      1. move the beam 2mm in any direction and return to step 4
    • Else If: the hole is visible in the square beam spot
      1. center the hole in the square by moving the beam
      2. Should look like this spotL
    • Else If: the beam spot doesn't look right
      1. Tell the Run Coordinator!
      2. Proceed to "Coarse Beam Centering WITHOUT spotL"
  7. Proceed to "Raster Target Check"
  8. When beam is centered, scaler rates should be similar to those in step 2b (cosmic rates)

Coarse Beam Centering procedure WITHOUT spotL:

CALL RC BEFORE EXECUTING THIS PROCEDURE. YOU SHOULD NORMALLY USE SPOT++ INSTEAD

  1. Move target to None Target
  2. Request pulsed, unrastered beam
    1. note scaler rates
  3. Move target to Carbon Single Foil
    1. note scaler rates (make sure rates are noticeably higher than Step 2a!)
  4. Move target to Carbon Hole
  5. Request delivery of pulsed, unrastered beam
    1. note scaler rates
    • If 4a ~ 2a:
      1. Congratulations! The beam center is within 2mm of target center!
      2. Proceed to "Fine Beam Centering WITHOUT spotL"
    • Else If 4a > 2a:
      1. The beam is hitting the carbon
      2. Scan the beam in +x direction until the beam hits the target support structure (scaler rates will get much larger).
      3. note beam position (x,y)
  6. move beam +/- 1mm in y, note scaler rates for each
  7. scan the beam in -x direction until the beam hits the target support structure
    1. note beam position (x,y)
  8. If Step 6 +y > -y:
    1. change beam x position to average of Step 5c x-position and Step 7a x-position
    2. scan beam in +y direction until the beam hits the target support structure
    3. note beam position (x,y)
  9. use 5c(x,y), 7a(x,y), and 8c(x,y) to calculate the center of the circular carbon target
  10. Proceed to "Fine Beam Centering WITHOUT spotL"


Fine Beam Centering WITHOUT spotL:

CALL RC BEFORE EXECUTING THIS PROCEDURE. YOU SHOULD NORMALLY USE SPOTL INSTEAD

  1. Request 5uA unrastered beam
  2. Find three points on the edge of the carbon hole, with a similar technique as in "Coarse Beam Centering"
  3. Calculate center of carbon hole using the three edge points.
  4. Move beam to calculated center position
  5. Proceed to "Raster Target Check"


Raster Target Check:

  1. Move to Home
  2. Request 5uA, unrastered beam, note T1 scaler rate
  3. Move to Raster Target
  4. Request 5uA, unrastered beam, note T1 scaler rate
  5. Request 5uA, 2x2 rastered beam, note T1 scaler rates
  6. If all three rates are similar and low (~few Hz), proceed with data taking
  7. If the rastered rate is higher, call RC and repeat beam-centering procedure