63 {
64
66
68 EvtVector4R pv, ps, ppr;
69
75
76 EvtHelSys angles( ppr, pv );
77 double theta = angles.getHelAng( 1 );
78 double phi = angles.getHelAng( 2 );
79 double gamma = 0;
80
81 int j1, j2, j3;
82 for ( j1 = 0; j1 <= 1; )
83 {
84 for ( j2 = 0; j2 <= 1; )
85 {
87 j2++;
88 }
89 j1++;
90 }
91
92
93
94
95
96
97
99 Djmn( 1, 1, -1, phi, theta, gamma ) );
100 vertex( 0, 0,
Djmn( 1, 1, 1, phi, theta, gamma ) );
102 Djmn( 1, 0, -1, phi, theta, gamma ) );
103 vertex( 2, 0,
Djmn( 1, 0, 1, phi, theta, gamma ) );
105 Djmn( 1, -1, -1, phi, theta, gamma ) );
106 vertex( 1, 0,
Djmn( 1, -1, 1, phi, theta, gamma ) );
107
108 return;
109}
EvtComplex Djmn(int j, int m, int n, double phi, double theta, double gamma)
**********Class see also m_nmax DOUBLE PRECISION m_amel DOUBLE PRECISION m_x2 DOUBLE PRECISION m_alfinv DOUBLE PRECISION m_Xenph INTEGER m_KeyWtm INTEGER m_idyfs DOUBLE PRECISION m_zini DOUBLE PRECISION m_q2 DOUBLE PRECISION m_Wt_KF DOUBLE PRECISION m_WtCut INTEGER m_KFfin *COMMON c_KarLud $ !Input CMS energy[GeV] $ !CMS energy after beam spread beam strahlung[GeV] $ !Beam energy spread[GeV] $ !z boost due to beam spread $ !electron beam mass *ff pair spectrum $ !minimum v
void vertex(const EvtComplex &)
const EvtVector4R & getP4() const
EvtParticle * getDaug(int i)
double initializePhaseSpace(int numdaughter, EvtId *daughters, double poleSize=-1., int whichTwo1=0, int whichTwo2=1)