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0001 // -*- C++ -*- 0002 // 0003 // Spin3MesonVectorScalarDecayer.h is a part of Herwig - A multi-purpose Monte Carlo event generator 0004 // Copyright (C) 2002-2019 The Herwig Collaboration 0005 // 0006 // Herwig is licenced under version 3 of the GPL, see COPYING for details. 0007 // Please respect the MCnet academic guidelines, see GUIDELINES for details. 0008 // 0009 #ifndef HERWIG_Spin3MesonVectorScalarDecayer_H 0010 #define HERWIG_Spin3MesonVectorScalarDecayer_H 0011 // 0012 // This is the declaration of the Spin3MesonVectorScalarDecayer class. 0013 // 0014 #include "Herwig/Decay/DecayIntegrator.h" 0015 #include "ThePEG/Helicity/LorentzPolarizationVector.h" 0016 #include "Herwig/Decay/PhaseSpaceMode.h" 0017 0018 namespace Herwig { 0019 using namespace ThePEG; 0020 0021 /** \ingroup Decay 0022 * 0023 * The <code>Spin3MesonVectorScalarDecayer</code> class is designed for the decay 0024 * of a rank 3 tensor meson to a vector and a scalar via matrix element which takes the form 0025 * \f[ \mathcal{M} = g \epsilon^{\mu\nu\rho}\epsilon_1^\beta (g_{\mu\beta} - \frac{p_{1\mu}p_{0\beta}}{p_0\cdot p_1-m_0m_1}) (p_1-p_2)_\nu (p_1-p_2)_\rho\f] 0026 * where \f$\epsilon^{\mu\nu\rho}\f$ is the polarization tensor of the decaying 0027 * meson, $p_{1,2}$ are the momenta of the decay products and \f$g\f$ is the coupling. 0028 * 0029 * In practice the decay \f$3^-\to1^-)^+\f$ has not been observed but the matrix element also 0030 * applies for the decay \f$3^-\to1^+)^-\f$ which has been observed. 0031 * 0032 * The incoming tensor mesons together with their decay products and the coupling 0033 * \f$g\f$ can be specified using the interfaces for the class. The maximum weights 0034 * for the decays can be calculated using the Initialize interface of the 0035 * DecayIntegrator class or specified using the interface. 0036 * 0037 * @see DecayIntegrator 0038 * 0039 * @see \ref Spin3MesonVectorScalarDecayerInterfaces "The interfaces" 0040 * defined for Spin3MesonVectorScalarDecayer. 0041 * 0042 */ 0043 class Spin3MesonVectorScalarDecayer: public DecayIntegrator { 0044 0045 public: 0046 0047 /** 0048 * Which of the possible decays is required 0049 * @param cc Is this mode the charge conjugate 0050 * @param parent The decaying particle 0051 * @param children The decay products 0052 */ 0053 virtual int modeNumber(bool & cc, tcPDPtr parent, 0054 const tPDVector & children) const; 0055 0056 /** 0057 * Return the matrix element squared for a given mode and phase-space channel. 0058 * @param ichan The channel we are calculating the matrix element for. 0059 * @param part The decaying Particle. 0060 * @param outgoing The particles produced in the decay 0061 * @param momenta The momenta of the particles produced in the decay 0062 * @param meopt Option for the calculation of the matrix element 0063 * @return The matrix element squared for the phase-space configuration. 0064 */ 0065 double me2(const int ichan,const Particle & part, 0066 const tPDVector & outgoing, 0067 const vector<Lorentz5Momentum> & momenta, 0068 MEOption meopt) const; 0069 0070 /** 0071 * Construct the SpinInfos for the particles produced in the decay 0072 */ 0073 virtual void constructSpinInfo(const Particle & part, 0074 ParticleVector outgoing) const; 0075 0076 /** 0077 * Specify the \f$1\to2\f$ matrix element to be used in the running width calculation. 0078 * @param dm The DecayMode 0079 * @param mecode The code for the matrix element as described 0080 * in the GenericWidthGenerator class, in this case 7. 0081 * @param coupling The coupling for the matrix element. 0082 * @return True or False if this mode can be handled. 0083 */ 0084 bool twoBodyMEcode(const DecayMode & dm, int & mecode, double & coupling) const; 0085 0086 /** 0087 * Output the setup information for the particle database 0088 * @param os The stream to output the information to 0089 * @param header Whether or not to output the information for MySQL 0090 */ 0091 virtual void dataBaseOutput(ofstream & os,bool header) const; 0092 0093 public: 0094 0095 /** @name Functions used by the persistent I/O system. */ 0096 //@{ 0097 /** 0098 * Function used to write out object persistently. 0099 * @param os the persistent output stream written to. 0100 */ 0101 void persistentOutput(PersistentOStream & os) const; 0102 0103 /** 0104 * Function used to read in object persistently. 0105 * @param is the persistent input stream read from. 0106 * @param version the version number of the object when written. 0107 */ 0108 void persistentInput(PersistentIStream & is, int version); 0109 //@} 0110 0111 /** 0112 * Standard Init function used to initialize the interfaces. 0113 */ 0114 static void Init(); 0115 0116 protected: 0117 0118 /** @name Clone Methods. */ 0119 //@{ 0120 /** 0121 * Make a simple clone of this object. 0122 * @return a pointer to the new object. 0123 */ 0124 virtual IBPtr clone() const {return new_ptr(*this);} 0125 0126 /** Make a clone of this object, possibly modifying the cloned object 0127 * to make it sane. 0128 * @return a pointer to the new object. 0129 */ 0130 virtual IBPtr fullclone() const {return new_ptr(*this);} 0131 //@} 0132 0133 protected: 0134 0135 /** @name Standard Interfaced functions. */ 0136 //@{ 0137 /** 0138 * Initialize this object after the setup phase before saving and 0139 * EventGenerator to disk. 0140 * @throws InitException if object could not be initialized properly. 0141 */ 0142 virtual void doinit(); 0143 0144 /** 0145 * Initialize this object to the begining of the run phase. 0146 */ 0147 virtual void doinitrun(); 0148 //@} 0149 0150 private: 0151 0152 /** 0153 * Private and non-existent assignment operator. 0154 */ 0155 Spin3MesonVectorScalarDecayer & operator=(const Spin3MesonVectorScalarDecayer &) = delete; 0156 0157 public: 0158 0159 /** 0160 * Set the parameters for a decay mode 0161 */ 0162 string setUpDecayMode(string arg); 0163 0164 private: 0165 0166 /** 0167 * the PDG codes for the incoming particles 0168 */ 0169 vector<int> incoming_; 0170 0171 /** 0172 * the PDG codes the outgoing particles (vector,scalar) 0173 */ 0174 vector<pair<long,long> > outgoing_; 0175 0176 /** 0177 * the coupling for the decay 0178 */ 0179 vector<InvEnergy> coupling_; 0180 0181 /** 0182 * the maximum weight for the decay 0183 */ 0184 vector<double> maxWeight_; 0185 0186 /** 0187 * Storage of polarization tensors to try and increase 0188 * speed 0189 */ 0190 mutable vector<Helicity::LorentzRank3Tensor<double> > tensors_; 0191 0192 /** 0193 * Storage of the polarization vectors 0194 */ 0195 mutable vector<Helicity::LorentzPolarizationVector> vectors_; 0196 0197 /** 0198 * Storage of the \f$\rho\f$ matrix 0199 */ 0200 mutable RhoDMatrix rho_; 0201 0202 }; 0203 0204 } 0205 0206 #endif /* HERWIG_Spin3MesonVectorScalarDecayer_H */
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