EvtGen 2.2.0
Monte Carlo generator of particle decays, in particular the weak decays of heavy flavour particles such as B mesons.
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EvtBtoXsllUtil.hh
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1
2/***********************************************************************
3* Copyright 1998-2020 CERN for the benefit of the EvtGen authors *
4* *
5* This file is part of EvtGen. *
6* *
7* EvtGen is free software: you can redistribute it and/or modify *
8* it under the terms of the GNU General Public License as published by *
9* the Free Software Foundation, either version 3 of the License, or *
10* (at your option) any later version. *
11* *
12* EvtGen is distributed in the hope that it will be useful, *
13* but WITHOUT ANY WARRANTY; without even the implied warranty of *
14* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
15* GNU General Public License for more details. *
16* *
17* You should have received a copy of the GNU General Public License *
18* along with EvtGen. If not, see <https://www.gnu.org/licenses/>. *
19***********************************************************************/
20
21#ifndef EVTBTOXSLLUTIL_HH
22#define EVTBTOXSLLUTIL_HH
23
27
28class EvtComplex;
29
30// Description:
31// Class to generate inclusive non-resonant B -> Xs l+ l- decays.
32// Description: Routine to generate non-resonant B -> Xs l+ l- decays.
33// It generates a dilepton mass spectrum according to
34// F.Kruger and L.M.Sehgal, Phys. Lett. B380, 199 (1996)
35// and then generates the two lepton momenta according to
36// A.Ali, G.Hiller, L.T.Handoko and T.Morozumi, Phys. Rev. D55, 4105 (1997).
37// Expressions for Wilson coefficients and power corrections are taken
38// from A.Ali, E.Lunghi, C.Greub and G.Hiller, Phys. Rev. D66, 034002 (2002).
39// Detailed formulae for shat dependence of these coefficients are taken
40// from H.H.Asatryan, H.M.Asatrian, C.Greub and M.Walker, PRD65, 074004 (2002)
41// and C.Bobeth, M.Misiak and J.Urban, Nucl. Phys. B574, 291 (2000).
42// The resultant Xs particles may be decayed by JETSET.
43
45 public:
46 EvtComplex GetC7Eff0( double sh, bool nnlo = true );
47 EvtComplex GetC7Eff1( double sh, double mb, bool nnlo = true );
48 EvtComplex GetC9Eff0( double sh, double mb, bool nnlo = true,
49 bool btod = false );
50 EvtComplex GetC9Eff1( double sh, double mb, bool nnlo = true,
51 bool btod = false );
52 EvtComplex GetC10Eff( double sh, bool nnlo = true );
53
54 double dGdsProb( double mb, double ms, double ml, double s );
55
56 double dGdsdupProb( double mb, double ms, double ml, double s, double u );
57
58 double FermiMomentum( double pf );
59
60 double FermiMomentumProb( double pb, double pf );
61};
62
63#endif
EvtComplex GetC10Eff(double sh, bool nnlo=true)
double dGdsProb(double mb, double ms, double ml, double s)
double FermiMomentumProb(double pb, double pf)
double FermiMomentum(double pf)
EvtComplex GetC9Eff0(double sh, double mb, bool nnlo=true, bool btod=false)
EvtComplex GetC7Eff1(double sh, double mb, bool nnlo=true)
EvtComplex GetC7Eff0(double sh, bool nnlo=true)
EvtComplex GetC9Eff1(double sh, double mb, bool nnlo=true, bool btod=false)
double dGdsdupProb(double mb, double ms, double ml, double s, double u)