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genie::MKFFEM Class Reference

Electromagnetic form factors for MK SPP model. More...

#include <MKFFEM.h>

Inheritance diagram for genie::MKFFEM:
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Public Member Functions

 MKFFEM ()
 
 MKFFEM (string name)
 
 ~MKFFEM ()
 
double F1V (const Interaction *interaction) const
 Compute the form factor F1V for the input interaction. More...
 
double xiF2V (const Interaction *interaction) const
 Compute the form factor xi*F2V for the input interaction. More...
 
double FA (const Interaction *interaction) const
 Compute the form factor FA for the input interaction. More...
 
double Fp (const Interaction *interaction) const
 Compute the form factor Fp for the input interaction. More...
 
void Configure (const Registry &config)
 
void Configure (string config)
 
- Public Member Functions inherited from genie::QELFormFactorsModelI
virtual ~QELFormFactorsModelI ()
 
- Public Member Functions inherited from genie::Algorithm
virtual ~Algorithm ()
 
virtual void FindConfig (void)
 
virtual const RegistryGetConfig (void) const
 
RegistryGetOwnedConfig (void)
 
virtual const AlgIdId (void) const
 Get algorithm ID. More...
 
virtual AlgStatus_t GetStatus (void) const
 Get algorithm status. More...
 
virtual bool AllowReconfig (void) const
 
virtual AlgCmp_t Compare (const Algorithm *alg) const
 Compare with input algorithm. More...
 
virtual void SetId (const AlgId &id)
 Set algorithm ID. More...
 
virtual void SetId (string name, string config)
 
const AlgorithmSubAlg (const RgKey &registry_key) const
 
void AdoptConfig (void)
 
void AdoptSubstructure (void)
 
virtual void Print (ostream &stream) const
 Print algorithm info. More...
 

Private Member Functions

void LoadConfig (void)
 
double tau (const Interaction *interaction) const
 
double F1P (const Interaction *interaction) const
 
double F2P (const Interaction *interaction) const
 
double F1N (const Interaction *interaction) const
 
double F2N (const Interaction *interaction) const
 

Private Attributes

const ELFormFactorsModelIfElFFModel
 
ELFormFactors fELFF
 

Additional Inherited Members

- Static Public Member Functions inherited from genie::Algorithm
static string BuildParamVectKey (const std::string &comm_name, unsigned int i)
 
static string BuildParamVectSizeKey (const std::string &comm_name)
 
static string BuildParamMatKey (const std::string &comm_name, unsigned int i, unsigned int j)
 
static string BuildParamMatRowSizeKey (const std::string &comm_name)
 
static string BuildParamMatColSizeKey (const std::string &comm_name)
 
- Protected Member Functions inherited from genie::QELFormFactorsModelI
 QELFormFactorsModelI ()
 
 QELFormFactorsModelI (string name)
 
 QELFormFactorsModelI (string name, string config)
 
- Protected Member Functions inherited from genie::Algorithm
 Algorithm ()
 
 Algorithm (string name)
 
 Algorithm (string name, string config)
 
void Initialize (void)
 
void DeleteConfig (void)
 
void DeleteSubstructure (void)
 
RegistryExtractLocalConfig (const Registry &in) const
 
RegistryExtractLowerConfig (const Registry &in, const string &alg_key) const
 Split an incoming configuration Registry into a block valid for the sub-algo identified by alg_key. More...
 
template<class T >
bool GetParam (const RgKey &name, T &p, bool is_top_call=true) const
 
template<class T >
bool GetParamDef (const RgKey &name, T &p, const T &def) const
 
template<class T >
int GetParamVect (const std::string &comm_name, std::vector< T > &v, bool is_top_call=true) const
 Handle to load vectors of parameters. More...
 
int GetParamVectKeys (const std::string &comm_name, std::vector< RgKey > &k, bool is_top_call=true) const
 
template<class T >
int GetParamMat (const std::string &comm_name, TMatrixT< T > &mat, bool is_top_call=true) const
 Handle to load matrix of parameters. More...
 
template<class T >
int GetParamMatSym (const std::string &comm_name, TMatrixTSym< T > &mat, bool is_top_call=true) const
 
int GetParamMatKeys (const std::string &comm_name, std::vector< RgKey > &k, bool is_top_call=true) const
 
int AddTopRegistry (Registry *rp, bool owns=true)
 add registry with top priority, also update ownership More...
 
int AddLowRegistry (Registry *rp, bool owns=true)
 add registry with lowest priority, also update ownership More...
 
int MergeTopRegistry (const Registry &r)
 
int AddTopRegisties (const vector< Registry * > &rs, bool owns=false)
 Add registries with top priority, also udated Ownerships. More...
 
- Protected Attributes inherited from genie::Algorithm
bool fAllowReconfig
 
bool fOwnsSubstruc
 true if it owns its substructure (sub-algs,...) More...
 
AlgId fID
 algorithm name and configuration set More...
 
vector< Registry * > fConfVect
 
vector< bool > fOwnerships
 ownership for every registry in fConfVect More...
 
AlgStatus_t fStatus
 algorithm execution status More...
 
AlgMapfOwnedSubAlgMp
 local pool for owned sub-algs (taken out of the factory pool) More...
 

Detailed Description

Electromagnetic form factors for MK SPP model.

Author
Igor Kakorin kakor.nosp@m.in@j.nosp@m.inr.r.nosp@m.u, Joint Institute for Nuclear Research
based on code of Costas Andreopoulos <c.andreopoulos cern.ch> University of Liverpool
Created:
Nov 12, 2019
License:
Copyright (c) 2003-2024, The GENIE Collaboration For the full text of the license visit http://copyright.genie-mc.org or see $GENIE/LICENSE

Definition at line 32 of file MKFFEM.h.

Constructor & Destructor Documentation

MKFFEM::MKFFEM ( )

Definition at line 33 of file MKFFEM.cxx.

33  :
34 QELFormFactorsModelI("genie::MKFFEM")
35 {
36 
37 }
MKFFEM::MKFFEM ( string  name)

Definition at line 39 of file MKFFEM.cxx.

39  :
40 QELFormFactorsModelI("genie::MKFFEM", config)
41 {
42 
43 }
MKFFEM::~MKFFEM ( )

Definition at line 45 of file MKFFEM.cxx.

46 {
47 
48 }

Member Function Documentation

void MKFFEM::Configure ( const Registry config)
virtual

Configure the algorithm with an external registry The registry is merged with the top level registry if it is owned, Otherwise a copy of it is added with the highest priority

Reimplemented from genie::Algorithm.

Definition at line 110 of file MKFFEM.cxx.

References genie::Algorithm::Configure(), and LoadConfig().

111 {
112  Algorithm::Configure(config);
113  this->LoadConfig();
114 }
virtual void Configure(const Registry &config)
Definition: Algorithm.cxx:62
void LoadConfig(void)
Definition: MKFFEM.cxx:122
void MKFFEM::Configure ( string  config)
virtual

Configure the algorithm from the AlgoConfigPool based on param_set string given in input An algorithm contains a vector of registries coming from different xml configuration files, which are loaded according a very precise prioriy This methods will load a number registries in order of priority: 1) "Tunable" parameter set from CommonParametes. This is loaded with the highest prioriry and it is designed to be used for tuning procedure Usage not expected from the user. 2) For every string defined in "CommonParame" the corresponding parameter set will be loaded from CommonParameter.xml 3) parameter set specified by the config string and defined in the xml file of the algorithm 4) if config is not "Default" also the Default parameter set from the same xml file will be loaded Effectively this avoids the repetion of a parameter when it is not changed in the requested configuration

Reimplemented from genie::Algorithm.

Definition at line 116 of file MKFFEM.cxx.

References genie::Algorithm::Configure(), and LoadConfig().

117 {
118  Algorithm::Configure(config);
119  this->LoadConfig();
120 }
virtual void Configure(const Registry &config)
Definition: Algorithm.cxx:62
void LoadConfig(void)
Definition: MKFFEM.cxx:122
double MKFFEM::F1N ( const Interaction interaction) const
private

Definition at line 66 of file MKFFEM.cxx.

References genie::ELFormFactors::Calculate(), fELFF, genie::ELFormFactors::Gen(), genie::ELFormFactors::Gmn(), and tau().

Referenced by F1V().

67 {
68  fELFF.Calculate(interaction);
69  double t = this->tau(interaction);
70  double T = 1 / (1 - t);
71  return T * (fELFF.Gen() - t * fELFF.Gmn());
72 }
double Gen(void) const
Get the computed form factor Gen.
Definition: ELFormFactors.h:56
ELFormFactors fELFF
Definition: MKFFEM.h:62
void Calculate(const Interaction *interaction)
Calculate the form factors for the input interaction using the attached algorithm.
double Gmn(void) const
Get the computed form factor Gmn.
Definition: ELFormFactors.h:59
double tau(const Interaction *interaction) const
Definition: MKFFEM.cxx:134
double MKFFEM::F1P ( const Interaction interaction) const
private

Definition at line 50 of file MKFFEM.cxx.

References genie::ELFormFactors::Calculate(), fELFF, genie::ELFormFactors::Gep(), genie::ELFormFactors::Gmp(), and tau().

Referenced by F1V().

51 {
52  fELFF.Calculate(interaction);
53  double t = this->tau(interaction);
54  double T = 1 / (1 - t);
55  return T * (fELFF.Gep() - t * fELFF.Gmp());
56 }
ELFormFactors fELFF
Definition: MKFFEM.h:62
void Calculate(const Interaction *interaction)
Calculate the form factors for the input interaction using the attached algorithm.
double tau(const Interaction *interaction) const
Definition: MKFFEM.cxx:134
double Gmp(void) const
Get the computed form factor Gmp.
Definition: ELFormFactors.h:53
double Gep(void) const
Get the computed form factor Gep.
Definition: ELFormFactors.h:50
double MKFFEM::F1V ( const Interaction interaction) const
virtual

Compute the form factor F1V for the input interaction.

Implements genie::QELFormFactorsModelI.

Definition at line 82 of file MKFFEM.cxx.

References F1N(), and F1P().

83 {
84  double F1p = this->F1P(interaction);
85  double F1n = this->F1N(interaction);
86 
87  double _F1V = F1p + F1n;
88  return _F1V;
89 }
double F1P(const Interaction *interaction) const
Definition: MKFFEM.cxx:50
double F1N(const Interaction *interaction) const
Definition: MKFFEM.cxx:66
double MKFFEM::F2N ( const Interaction interaction) const
private

Definition at line 74 of file MKFFEM.cxx.

References genie::ELFormFactors::Calculate(), fELFF, genie::ELFormFactors::Gen(), genie::ELFormFactors::Gmn(), and tau().

Referenced by xiF2V().

75 {
76  fELFF.Calculate(interaction);
77  double t = this->tau(interaction);
78  double T = 1 / (1 - t);
79  return T * (fELFF.Gmn() - fELFF.Gen());
80 }
double Gen(void) const
Get the computed form factor Gen.
Definition: ELFormFactors.h:56
ELFormFactors fELFF
Definition: MKFFEM.h:62
void Calculate(const Interaction *interaction)
Calculate the form factors for the input interaction using the attached algorithm.
double Gmn(void) const
Get the computed form factor Gmn.
Definition: ELFormFactors.h:59
double tau(const Interaction *interaction) const
Definition: MKFFEM.cxx:134
double MKFFEM::F2P ( const Interaction interaction) const
private

Definition at line 58 of file MKFFEM.cxx.

References genie::ELFormFactors::Calculate(), fELFF, genie::ELFormFactors::Gep(), genie::ELFormFactors::Gmp(), and tau().

Referenced by xiF2V().

59 {
60  fELFF.Calculate(interaction);
61  double t = this->tau(interaction);
62  double T = 1 / (1 - t);
63  return T * (fELFF.Gmp() - fELFF.Gep());
64 }
ELFormFactors fELFF
Definition: MKFFEM.h:62
void Calculate(const Interaction *interaction)
Calculate the form factors for the input interaction using the attached algorithm.
double tau(const Interaction *interaction) const
Definition: MKFFEM.cxx:134
double Gmp(void) const
Get the computed form factor Gmp.
Definition: ELFormFactors.h:53
double Gep(void) const
Get the computed form factor Gep.
Definition: ELFormFactors.h:50
double MKFFEM::FA ( const Interaction interaction) const
virtual

Compute the form factor FA for the input interaction.

Implements genie::QELFormFactorsModelI.

Definition at line 100 of file MKFFEM.cxx.

101 {
102  return 0.;
103 }
double MKFFEM::Fp ( const Interaction interaction) const
virtual

Compute the form factor Fp for the input interaction.

Implements genie::QELFormFactorsModelI.

Definition at line 105 of file MKFFEM.cxx.

106 {
107  return 0.;
108 }
void MKFFEM::LoadConfig ( void  )
private

Definition at line 122 of file MKFFEM.cxx.

References fELFF, fElFFModel, genie::ELFormFactors::SetModel(), and genie::Algorithm::SubAlg().

Referenced by Configure().

123 {
124 // Load configuration data from its configuration Registry (or global defaults)
125 // to private data members
126  fElFFModel =
127  dynamic_cast<const ELFormFactorsModelI *> (this->SubAlg("ElasticFormFactorsModel"));
128  assert(fElFFModel);
130 
131 
132 }
const ELFormFactorsModelI * fElFFModel
Definition: MKFFEM.h:60
Pure abstract base class. Defines the ELFormFactorsModelI interface to be implemented by any algorith...
ELFormFactors fELFF
Definition: MKFFEM.h:62
void SetModel(const ELFormFactorsModelI *model)
Attach an algorithm.
const Algorithm * SubAlg(const RgKey &registry_key) const
Definition: Algorithm.cxx:345
double MKFFEM::tau ( const Interaction interaction) const
private

Definition at line 134 of file MKFFEM.cxx.

References genie::PDGLibrary::Find(), genie::PDGLibrary::Instance(), genie::Interaction::Kine(), genie::kPdgNeutron, genie::kPdgProton, and genie::Kinematics::q2().

Referenced by F1N(), F1P(), F2N(), and F2P().

135 {
136 // computes q^2 / (4 * MNucl^2)
137 
138  //-- get kinematics & initial state parameters
139  const Kinematics & kinematics = interaction->Kine();
140  // const InitialState & init_state = interaction->InitState();
141  double q2 = kinematics.q2();
142 
143  PDGLibrary * pdglib = PDGLibrary::Instance();
144  double M = (pdglib->Find(kPdgProton)->Mass() + pdglib->Find(kPdgNeutron)->Mass())/2;
145 
146  //-- calculate q^2 / (4*Mnuc^2)
147  return q2/(4*M*M);
148 }
Generated/set kinematical variables for an event.
Definition: Kinematics.h:39
double q2(bool selected=false) const
Definition: Kinematics.cxx:141
const Kinematics & Kine(void) const
Definition: Interaction.h:71
static PDGLibrary * Instance(void)
Definition: PDGLibrary.cxx:68
Singleton class to load &amp; serve a TDatabasePDG.
Definition: PDGLibrary.h:35
const int kPdgProton
Definition: PDGCodes.h:81
TParticlePDG * Find(int pdgc, bool must_exist=true)
Definition: PDGLibrary.cxx:86
const int kPdgNeutron
Definition: PDGCodes.h:83
double MKFFEM::xiF2V ( const Interaction interaction) const
virtual

Compute the form factor xi*F2V for the input interaction.

Implements genie::QELFormFactorsModelI.

Definition at line 91 of file MKFFEM.cxx.

References F2N(), and F2P().

92 {
93  double F2p = this->F2P(interaction);
94  double F2n = this->F2N(interaction);
95 
96  double _xiF2V = F2p + F2n;
97  return _xiF2V;
98 }
double F2P(const Interaction *interaction) const
Definition: MKFFEM.cxx:58
double F2N(const Interaction *interaction) const
Definition: MKFFEM.cxx:74

Member Data Documentation

ELFormFactors genie::MKFFEM::fELFF
mutableprivate

Definition at line 62 of file MKFFEM.h.

Referenced by F1N(), F1P(), F2N(), F2P(), and LoadConfig().

const ELFormFactorsModelI* genie::MKFFEM::fElFFModel
private

Definition at line 60 of file MKFFEM.h.

Referenced by LoadConfig().


The documentation for this class was generated from the following files: