Difference between revisions of "Geometry (25 MeV LINAC exit port)"
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| Line 34: | Line 34: | ||
==condition 2: F1A = 286 cm== | ==condition 2: F1A = 286 cm== | ||
| + | 1) assuming the collimator diameter is <math>\Theta_C \Rightarrow E_{min} = 33.1\ MeV </math> | ||
| + | 2) assuming the collimator diameter is <math>\Theta_C \Rightarrow E_{min} = 33.1\ MeV </math> | ||
| + | 3) assuming the collimator diameter is <math>\Theta_C \Rightarrow E_{min} = 33.1\ MeV </math> | ||
| + | |||
| + | 4) for arbitrary collimator size <math>\frac{\Theta_C}{m}</math>: | ||
[[File:plot_energy_F1A.jpeg]] | [[File:plot_energy_F1A.jpeg]] | ||
Revision as of 18:50, 14 June 2010
Minimum accelerator energy to run experiment
condition 1: fitting the collimator size into the hole
The minimum energy of accelerator (MeV) is limited by fitting the collimator size into the hole R = 8.73 cm:
1) Assuming the collimator diameter is :
2) Assuming the collimator diameter is :
3) Assuming the collimator diameter is :
4) for arbitrary collimator size:
All energy above this line is good to run experiment
condition 2: F1A = 286 cm
1) assuming the collimator diameter is
2) assuming the collimator diameter is
3) assuming the collimator diameter is
4) for arbitrary collimator size :
All energy above this line is good to run experiment
both conditions above are together
All energy above this lines is good to run experiment
25 MeV geometry
geometry calculation
| collimator diameter | |||||||||
|---|---|---|---|---|---|---|---|---|---|
| 4.13 cm | 6.78 cm | 2.92 cm | 4.79 cm | 75 cm | 143 cm | ||||
| 4.13 cm | 6.78 cm | 1.46 cm | 2.40 cm | 136 cm | 203 cm |
geometry pictures
how it looks 1 (, box 3"x4" and then pipe 4")
File:Vacuum pipe collimator .png
how it looks 2 (, box 3"x4" and then pipe 4")
File:Vacuum pipe collimator .png


