T2: Behaviour of pertubation and loops Flashcards
1
Q
Define regularisation for a divergent feynman diagram
A
Introducing a cuttoff Λ»_space; m into the momentum integral of the loop, truncating to before infinity.
2
Q
Define renormalisation
A
We redefine mass in the denominator of the expression for the Feynman propagator by combining
m_r^2 = m^2 + G_F^0(0)
3
Q
Give the form of G_0^F (x,y) in momentum space
A
INT d^4p /(2π)^4 -i/p^2 + m^2