Difference between revisions of "Counts Rate (44 MeV LINAC)"

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[http://wiki.iac.isu.edu/index.php/PhotoFission_with_Polarized_Photons_from_HRRL Go Back]
 
[http://wiki.iac.isu.edu/index.php/PhotoFission_with_Polarized_Photons_from_HRRL Go Back]
 
=Counts Rate Calculations=
 
  
 
==LINAC parameters used in calculations==
 
==LINAC parameters used in calculations==
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4) energy 44 MeV <br>
 
4) energy 44 MeV <br>
  
==number of electrons in 1 second==
+
==number of <math>e^-</math>electrons in 1 second==
<math> 50ps \times 100A \times 120Hz \times \frac{1\cdot e^-}{1.6\cdot 10^{-19}C} = 0.375 \cdot 10^{13} \frac{e^-}{sec}
+
<math> 50ps \times 100A \times 120Hz \times \frac{1\cdot e^-}{1.6\cdot 10^{-19}C} = 0.375 \cdot 10^{13} \frac{e^-}{sec}</math><br><br>
</math><br><br>
 
  
 
==number of gammas in 1 second==
 
==number of gammas in 1 second==

Revision as of 19:58, 17 May 2010

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LINAC parameters used in calculations

1) pulse width 50 ns
2) pulse current 100 A
3) repetition rate 120 Hz
4) energy 44 MeV

number of [math]e^-[/math]electrons in 1 second

[math] 50ps \times 100A \times 120Hz \times \frac{1\cdot e^-}{1.6\cdot 10^{-19}C} = 0.375 \cdot 10^{13} \frac{e^-}{sec}[/math]

number of gammas in 1 second

[math]10^{-3} \frac{\gamma 's}{(e^-\ MeV\ r.l.)} \times 2 \cdot 10^{-4} r.l. \times 44 MeV \times 0.375 \cdot 10^{12} \frac{e^-}{sec}=0.3 \cdot 10^{7} \frac{\gamma}{sec}[/math]

number of neutrons in 1 second

geometrical factor, isotropic case

conclusion