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Method

When a muon of energy E moves in the field of an atom of charge Z, it can radiate a -pair (4th order QED process) with differential cross-section []: {2σν ρ}=α4{23 π}(Z λ)2{1-vv}[ φe+ ({memμ})2φμ]

where

ν= { E++ E-E}&quad;and&quad;ρ={E+- E-E++ E-}

and

α

1/137, fine structure constant;
λ

3.8616 x10-11 cm, electron Compton wavelength;
v
k/E fraction of energy transferred to the pair;
T
E-M kinetic energy of the muon.
E±

the energy of the e± .

The explicit form of the terms φe and φμ

can be found in []. The kinematic ranges of ν and ρ are:
{4meE}=νmin ν νmax = 1 -0.75 e{mμE}Z1/3

0=ρmin |ρ(ν) | ρmax(ν) = [1-{6mμ2E2(1-ν)}]1- {4meνE}

where e = 2.718... .

Ec ( PPCUTM in the program) is the energy cut-off; below this energy -pair are treated as continuous energy loss, and above they are explicitly generated and vc= Ec/E . The mean value of the energy lost by the incident muon due to -pair with energy below Ec is: Elosspair(Z,T,Ec) = 2E ∫νminνc dν ν∫0ρmax(ν) dρ {2σν ρ}&sp;GeV barn/atom

whereas the total cross-section for the emission of a hard -pair is: σ(Z,T,Ec) = 2 ∫νcνmaxd ν ∫0ρmax(ν)d ρ {2σ ν ρ}&sp;barn/atom



Janne Saarela
Mon Apr 3 12:46:29 METDST 1995