Difference between revisions of "Relativistic Differential Cross-section"
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− | <center><math>F=2E_1 2E_2|\vec {v}_1-\vec {v}_2|=4|E_1E_2\vec v_{ | + | <center><math>F=2E_1 2E_2|\vec {v}_1-\vec {v}_2|=4|E_1E_2\vec v_{12}|</math></center> |
− | where <math>v_{ | + | where <math>v_{12}</math> is the relative velocity between the particles. |
Revision as of 01:48, 4 July 2017
Relativistic Differential Cross-section
dQ is the invariant Lorentz phase space factor
and F is the flux of incoming particles
where is the relative velocity between the particles.
Using the relativistic definition of energy
In the frame where one of the particles (particle 1) is at rest , the relative velocity can be expressed as
The invariant form of F is
In the center of mass frame