#include "PHASIC++/Channels/Single_Channel.H" #include "ATOOLS/Org/Run_Parameter.H" #include "ATOOLS/Org/MyStrStream.H" #include "ATOOLS/Org/Scoped_Settings.H" #include "PHASIC++/Channels/Channel_Elements.H" #include "PHASIC++/Channels/Vegas.H" using namespace PHASIC; using namespace ATOOLS; namespace PHASIC { class C3_10 : public Single_Channel { double m_amct,m_alpha,m_ctmax,m_ctmin; Info_Key m_kI_3_4,m_kTC_0__1__2_34,m_kZS_0; Vegas* p_vegas; public: C3_10(int,int,Flavour*,Integration_Info * const); ~C3_10(); void GenerateWeight(Vec4D *,Cut_Data *); void GeneratePoint(Vec4D *,Cut_Data *,double *); void AddPoint(double); void MPISync() { p_vegas->MPISync(); } void Optimize() { p_vegas->Optimize(); } void EndOptimize() { p_vegas->EndOptimize(); } void WriteOut(std::string pId) { p_vegas->WriteOut(pId); } void ReadIn(std::string pId) { p_vegas->ReadIn(pId); } void ISRInfo(int &,double &,double &); std::string ChID(); }; } extern "C" Single_Channel * Getter_C3_10(int nin,int nout,Flavour* fl,Integration_Info * const info) { return new C3_10(nin,nout,fl,info); } void C3_10::GeneratePoint(Vec4D * p,Cut_Data * cuts,double * _ran) { double *ran = p_vegas->GeneratePoint(_ran); for(int i=0;iGetscut((1<<3)|(1<<4)); Vec4D p34; double s34 = CE.MasslessPropMomenta(.5,s34_min,s34_max,ran[0]); double s2 = ms[2]; m_ctmax = cuts->cosmax[0][2]; m_ctmin = cuts->cosmin[0][2]; CE.TChannelMomenta(p[0],p[1],p[2],p34,s2,s34,0.,m_alpha,m_ctmax,m_ctmin,m_amct,0,ran[1],ran[2]); CE.Isotropic2Momenta(p34,s3,s4,p[3],p[4],ran[3],ran[4]); } void C3_10::GenerateWeight(Vec4D* p,Cut_Data * cuts) { double wt = 1.; Vec4D p234=p[0]+p[1]; double s234_max = p234.Abs2(); double s34_max = sqr(sqrt(s234_max)-sqrt(ms[2])); double s34_min = cuts->Getscut((1<<3)|(1<<4)); Vec4D p34 = p[3]+p[4]; double s34 = dabs(p34.Abs2()); wt *= CE.MasslessPropWeight(.5,s34_min,s34_max,s34,rans[0]); m_ctmax = cuts->cosmax[0][2]; m_ctmin = cuts->cosmin[0][2]; if (m_kTC_0__1__2_34.Weight()==ATOOLS::UNDEFINED_WEIGHT) m_kTC_0__1__2_34<GenerateWeight(rans); if (wt!=0.) wt = vw/wt/pow(2.*M_PI,3*3.-4.); weight = wt; } C3_10::C3_10(int nin,int nout,Flavour* fl,Integration_Info * const info) : Single_Channel(nin,nout,fl) { name = std::string("C3_10"); rannum = 5; rans = new double[rannum]; auto& s = Settings::GetMainSettings(); m_amct = 1.0 + s["CHANNEL_EPSILON"].Get(); m_alpha = s["SCHANNEL_ALPHA"].Get(); m_ctmax = 1.; m_ctmin = -1.; m_kI_3_4.Assign(std::string("I_3_4"),2,0,info); m_kTC_0__1__2_34.Assign(std::string("TC_0__1__2_34"),2,0,info); m_kZS_0.Assign(std::string("ZS_0"),2,0,info); p_vegas = new Vegas(rannum,100,name); } C3_10::~C3_10() { delete p_vegas; } void C3_10::ISRInfo(int & type,double & mass,double & width) { type = 2; mass = 0; width = 0.; } void C3_10::AddPoint(double Value) { Single_Channel::AddPoint(Value); p_vegas->AddPoint(Value,rans); } std::string C3_10::ChID() { return std::string("CGND$I_3_4$MTH_34$TC_0__1__2_34$ZS_0$"); }