NLO part over total second Z2-odd 01 eigenvalue (corresponding to unitarityNLOev10).
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#include <unitarity.h>
NLO part over total second Z2-odd 01 eigenvalue (corresponding to unitarityNLOev10).
Definition at line 1697 of file unitarity.h.
◆ unitarityR10()
◆ computeThValue()
| double unitarityR10::computeThValue |
( |
| ) |
|
|
virtual |
- Returns
- \(|a^{\text{odd,NLO}}_{01-}/a^{\text{odd}}_{01-}|\)
Implements ThObservable.
Definition at line 3599 of file unitarity.cpp.
3614 double betalambda3 = 3.0*la1Q*la3Q + 3.0*la2Q*la3Q + 2.0*la3Q*la3Q + la1Q*la4Q + la2Q*la4Q + la4Q*la4Q + la5Q*la5Q
3615 + 3.0*la3Q*Yb1Q*Yb1Q + 3.0*la3Q*Yb2Q*Yb2Q + la3Q*Ytau1Q*Ytau1Q + la3Q*Ytau2Q*Ytau2Q + 3.0*la3Q*YtQ*YtQ
3616 - 6.0*Yb1Q*Yb1Q*(Yb2Q*Yb2Q + YtQ*YtQ) - 2.0*Ytau1Q*Ytau1Q*Ytau2Q*Ytau2Q;
3617 double betalambda5 = la5Q*(la1Q + la2Q + 4.0*la3Q + 6.0*la4Q)
3618 + 3.0*la5Q*Yb1Q*Yb1Q + la5Q*Ytau1Q*Ytau1Q + la5Q*(3.0*Yb2Q*Yb2Q + Ytau2Q*Ytau2Q + 3.0*YtQ*YtQ)
3619 - 6.0*Yb1Q*Yb1Q*Yb2Q*Yb2Q - 2.0*Ytau1Q*Ytau1Q*Ytau2Q*Ytau2Q;
3621 double uniNLO10a = -la3Q/(16.0*M_PI);
3622 double uniNLO10b = 3.0*betalambda3/(256.0*M_PI*M_PI*M_PI);
3624 gslpp::complex uniNLO10d = -(la3Q+la4Q-la5Q)/(512.0*M_PI*M_PI*M_PI) * WFRc2;
3626 double uniNLO11a = -la5Q/(16.0*M_PI);
3627 double uniNLO11b = 3.0*betalambda5/(256.0*M_PI*M_PI*M_PI);
3629 gslpp::complex uniNLO11d = -(la4Q-2.0*la5Q)/(512.0*M_PI*M_PI*M_PI) * WFRc2;
3635 double a0LO = uniNLO10a-uniNLO11a;
3637 if(a0NLO.
abs()>Rpeps)
3639 R = (a0NLO-a0LO).abs()/(a0NLO.
abs());
◆ myTHDM
| const THDM& unitarityR10::myTHDM |
|
private |
The documentation for this class was generated from the following files: