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Probability density function of photon emission from EM-shower as a function of cosine of the emission angle. More...
#include <JGeanx.hh>
Public Member Functions | |
| JGeanx (const double __a, const double __b, const double __n=getIndexOfRefractionPhase()) | |
| Constructor.   | |
| double | operator() (const double ct) const | 
| Number of photons from EM-shower as a function of emission angle.   | |
| double | operator() (const double xmin, const double xmax) const | 
| Integral number of photons from EM-shower between two emission angles.   | |
| double | evaluate (const double ct) const | 
| Functional dependence.   | |
| double | evaluate (const double xmin, const double xmax) const | 
| Integral.   | |
Public Attributes | |
| const double | a | 
| power   | |
| const double | b | 
| slope   | |
| const double | n | 
| index of refraction   | |
Private Attributes | |
| double | c | 
| normalisation constant   | |
Probability density function of photon emission from EM-shower as a function of cosine of the emission angle.
     \f[ P(\cos(\theta))  =  c \times e^{b \times |\cos(\theta) - 1/n|^a} \f]
where 

The parametrisation is taken from reference: R. Mirani, "Parametrisation of EM-showers in the ANTARES detector volume.", Doctoral thesis in computational physics, University of Amsterdam.
      
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Integral number of photons from EM-shower between two emission angles.
The integral over full solid angle is normalised to one.
| xmin | minimal cosine angle of emmision | 
| xmax | maximal cosine angle of emmision | 
      
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Integral.
In this, the normalisation constant c = 1.
| xmin | minimal cosine angle of emmision | 
| xmax | maximal cosine angle of emmision | 
Definition at line 105 of file JGeanx.hh.