Difference between revisions of "Photon yield"

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'''Tantalum target'''
 
'''Tantalum target'''
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The maximum photon yield for Ta was 30<math>\gamma</math> per <math>10^4</math> incident electrons in in the range of angles <math>0^0 < \theta < 2^0 </math> and for <math>E_{\gamma} > 6 MeV</math>.
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[[Image:Ta_set_of_targets.png|500px]]
  
 
[[Image:Ta_energy.png|500px]]
 
[[Image:Ta_energy.png|500px]]
  
''Figure 1:'' Energy specrtum of photons coming out from Ta target of thickness 4.16 g/<math>cm^2</math>
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''Figure 1:'' Energy specrtum of photons coming out from Ta target of thickness 4.16 g/<math>cm^2</math>.
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[[Image:Ta_yield.png|500px]]
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''Figure 2:'' Photon yield from Ta target of thickness 4.16 g/<math>cm^2</math> in the range of angles <math>0^0 < \theta < 2^0 </math> and for <math>E_{\gamma} > 6 MeV</math>.
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[[Calculation of radiation yield]]

Latest revision as of 19:11, 8 May 2008

There were used couple of targets to simulate bremsstrahlung radiation yield. Energy of incident electrons was chosen to be E = 14.0 MeV. Number of incident electrons was [math]10^4[/math]. The radiatoin yield was estimated for [math]E_{\gamma} \gt 6 MeV[/math] in the range of angles [math]0^0 \lt \theta \lt 2^0 [/math], [math]\theta[/math] is opening angle of the radiation cone.

Tantalum target

The maximum photon yield for Ta was 30[math]\gamma[/math] per [math]10^4[/math] incident electrons in in the range of angles [math]0^0 \lt \theta \lt 2^0 [/math] and for [math]E_{\gamma} \gt 6 MeV[/math].

Ta set of targets.png

Ta energy.png

Figure 1: Energy specrtum of photons coming out from Ta target of thickness 4.16 g/[math]cm^2[/math].

Ta yield.png

Figure 2: Photon yield from Ta target of thickness 4.16 g/[math]cm^2[/math] in the range of angles [math]0^0 \lt \theta \lt 2^0 [/math] and for [math]E_{\gamma} \gt 6 MeV[/math].


Calculation of radiation yield