Difference between revisions of "Neutron energy resolution in NaI detector"

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<math> \delta E_n = -2\ E_n \frac{\delta t_n}{t_n} = -\frac{2 \sqrt{2}}{\sqrt{m} d}\ E_n^{3/2} \delta t_n </math>
 
<math> \delta E_n = -2\ E_n \frac{\delta t_n}{t_n} = -\frac{2 \sqrt{2}}{\sqrt{m} d}\ E_n^{3/2} \delta t_n </math>
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* From NaI detector measurements <math>\delta t_n = 15\ ns</math>
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* $mc^2 = 938\ MeV$

Revision as of 03:33, 28 April 2012

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[math] E_n = \frac{m}{2}\left( \frac{d}{t_n} \right)^2 [/math]

[math] \delta E_n = -2\ E_n \frac{\delta t_n}{t_n} = -\frac{2 \sqrt{2}}{\sqrt{m} d}\ E_n^{3/2} \delta t_n [/math]


  • From NaI detector measurements [math]\delta t_n = 15\ ns[/math]
  • $mc^2 = 938\ MeV$