Difference between revisions of "Neutron Polarimeter"
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Detector is located at <math>\Theta_n = 90^o</math>, so | Detector is located at <math>\Theta_n = 90^o</math>, so | ||
− | <math> T_{\gamma} = \frac {2\ m_D\ E_n + m_p^2 - m_D^2 - m_n^2} {2\left( m_D - E_n \right)} </math> | + | <math> T_{\gamma} = \frac {2\ m_D\ E_n + m_p^2 - m_D^2 - m_n^2} {2\left( m_D - E_n \right)} = |
+ | \frac {2\ m_D\ (T_n + m_n) + m_p^2 - m_D^2 - m_n^2} {2\left( m_D - (T_n + m_n) \right)}</math> | ||
and visa versa | and visa versa | ||
− | <math> | + | <math> T_n = \frac {2\ T_{\gamma}\ m_D + m_D^2 + m_n^2 - m_p^2} {2\left( T_{\gamma} + m_D \right)} - m_n</math> |
==Analise of the energy dependence <math>T_{\gamma}\left(E_n\right)</math> == | ==Analise of the energy dependence <math>T_{\gamma}\left(E_n\right)</math> == |