Difference between revisions of "Relativistic Differential Cross-section"
		
		
		
		
		
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| − | <center><math>dQ=(2\pi)^4\delta^4(\vec  | + | <center><math>dQ=(2\pi)^4\delta^4 \left(\vec p_{1} +\vec p_{2} - \vec p_{1}^{'} -\vec p_{2}^{'} \right)\frac{d^3 \vec p_{1}^{'}}{(2\pi)^3 2E_{1}^{'}}\frac{d^3 \vec p_{2}^{'}}{(2\pi)^3 2E_{2}^{'}}</math></center> | 
Revision as of 20:43, 29 December 2018
Relativistic Differential Cross-section
dQ is the invariant Lorentz phase space factor
and F is the flux of incoming particles
 
In the center of mass frame