Difference between revisions of "Counts Rate (44 MeV LINAC)"
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Line 20: | Line 20: | ||
==radiation length== | ==radiation length== | ||
− | r.l. | + | Titanium r.l. is 3.59 cm |
take radiator thickness is <math>12.5 \mu m</math> | take radiator thickness is <math>12.5 \mu m</math> | ||
Line 30: | Line 30: | ||
=Collimation factor= | =Collimation factor= | ||
− | + | 4-6 % of total # of photons going through collimator (Alex, GEANT calculation) | |
− | So, | + | |
+ | So, incident flux on target is | ||
+ | |||
<math>1.64 \cdot 10^{9} \frac{\gamma}{sec} \cdot 5% = 8.2 \cdot 10^{7} \frac{\gamma}{sec}</math><br><br> | <math>1.64 \cdot 10^{9} \frac{\gamma}{sec} \cdot 5% = 8.2 \cdot 10^{7} \frac{\gamma}{sec}</math><br><br> | ||
=Number of neutrons/sec (yields)= | =Number of neutrons/sec (yields)= | ||
==cross section== | ==cross section== | ||
− | plot from Berman | + | plot from Berman |
+ | |||
From plot above the average cross section for <math>^{238}U</math> in (10,20) MeV region is: | From plot above the average cross section for <math>^{238}U</math> in (10,20) MeV region is: | ||
+ | |||
130 mb | 130 mb | ||
==target thickness, <math>^{238}U</math>== | ==target thickness, <math>^{238}U</math>== | ||
− | <math>\frac{19.1\ g/cm^3}{238.02\ g/mol} = 0.08\ \frac{mol}{cm^3} = 0.08\ \frac{mol}{cm^3} \times \frac{6.02\cdot 10^{23}\ atoms}{mol} = 0.48\cdot 10^{23}\ \frac{atoms}{cm^3}</math | + | <math>\frac{19.1\ g/cm^3}{238.02\ g/mol} = 0.08\ \frac{mol}{cm^3} = 0.08\ \frac{mol}{cm^3} \times \frac{6.02\cdot 10^{23}\ atoms}{mol} = 0.48\cdot 10^{23}\ \frac{atoms}{cm^3}</math> |
− | Assume the target thickness is 1 cm | + | |
+ | Assume the target thickness is 1 cm: | ||
+ | |||
<math>0.48\cdot 10^{23}\ \frac{atoms}{cm^3} \times 1\ cm = 0.48\cdot 10^{23}\ \frac{atoms}{cm^2}</math> | <math>0.48\cdot 10^{23}\ \frac{atoms}{cm^3} \times 1\ cm = 0.48\cdot 10^{23}\ \frac{atoms}{cm^2}</math> | ||
==neutrons per fission== | ==neutrons per fission== | ||
+ | |||
2.4 neutrons/fission | 2.4 neutrons/fission | ||
Revision as of 21:57, 17 May 2010
LINAC parameters used in calculations
1) pulse width 50 ns
2) pulse current 50 A
3) repetition rate 300 Hz
4) energy 44 MeV
Number of electrons/sec on radiator
Number of photons/sec from radiator
bremsstrahlung
plot from Dale
in (10,20) MeV region we have about
0.1 photons/electrons/MeV/r.l
radiation length
Titanium r.l. is 3.59 cm
take radiator thickness is
steps together...
Collimation factor
4-6 % of total # of photons going through collimator (Alex, GEANT calculation)
So, incident flux on target is
Number of neutrons/sec (yields)
cross section
plot from Berman
From plot above the average cross section for
in (10,20) MeV region is:130 mb
target thickness,
Assume the target thickness is 1 cm:
neutrons per fission
2.4 neutrons/fission
steps together...
Worst Case Isotropic Neutrons
Let's say we have:
radius detector = 1 cm
1 meter away
fractional solid angle =
<= geometrical acceptance