Difference between revisions of "Neutron Polarimeter"
		
		
		
		
		
		Jump to navigation
		Jump to search
		
				
		
		
	
| Line 65: | Line 65: | ||
|   the corresponding uncertainly for photons is: |   the corresponding uncertainly for photons is: | ||
| − |   <math> \bigtriangleup T_{\gamma} = 2.051\ \bigtriangleup T_n  | + |   <math> \bigtriangleup T_{\gamma} = 2.051\ \bigtriangleup T_n   | 
| − | + |                                   = 2.051\times 1\ MeV = 2.051\ MeV </math> | |
| [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] | ||
Revision as of 04:00, 7 June 2010
Analysis of energy dependence
four-vectors algebra
writing four-vectors:
Doing four-vector algebra:
Detector is located at , so
and visa versa
 
plots
low energy approximation
As we can see from Fig.2 for low energy neutrons (0-21 MeV)
energy dependence of incident photons is linear
Find that dependence. We have:
So, the equation of the line is:
Finally for low energy neutrons (0-21 MeV):
example of error analysis
If we have, say, 10 MeV neutron with uncertainly 1 MeV,
the corresponding uncertainly for photons is:


