Difference between revisions of "Geometry (25 MeV LINAC exit port)"
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<math>\frac{1}{\sqrt{2}}\ (286+183)\ \tan\left(\frac{0.511}{E_{min}}\right) + | <math>\frac{1}{\sqrt{2}}\ (286+183)\ \tan\left(\frac{0.511}{E_{min}}\right) + | ||
\frac{1}{2}\ (286+183)\ \tan\left(\frac{1}{4}\ \frac{0.511}{E_{min}}\right) = 8.73 \Rightarrow E_{min} = 22.8\ MeV </math> | \frac{1}{2}\ (286+183)\ \tan\left(\frac{1}{4}\ \frac{0.511}{E_{min}}\right) = 8.73 \Rightarrow E_{min} = 22.8\ MeV </math> | ||
+ | |||
+ | 4) In general: | ||
+ | |||
+ | [[File:plot_energy_collimatorsize.jpeg|400px]] | ||
=25 MeV geometry= | =25 MeV geometry= |
Revision as of 04:14, 13 June 2010
Minimum accelerator energy to run experiment
The minimum energy of accelerator (MeV) is limited by fitting the collimator (
) into the hole ( )
1) Assuming the collimator diameter is
:
2) Assuming the collimator diameter is
:
3) Assuming the collimator diameter is
:
4) In general:
25 MeV geometry
critical angle
kicker angle
geometry ( )
collimator center position
(wall 1)
(wall 2)
collimator diameter
(wall 1)
(wall 2)
collimator critical angle
:
minimal distance from the wall ( )
geometry ( )
collimator center position
(wall 1)
(wall 2)
collimator diameter
(wall 1)
(wall 2)
collimator critical angle
:
minimal distance from the wall ( )
Funny 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