mirror of
https://github.com/aportelli/LatAnalyze.git
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first stab at correlator fit utility classes
This commit is contained in:
parent
51efb2a81f
commit
f826f30e82
@ -54,6 +54,8 @@ libLatAnalyze_la_SOURCES = \
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Numerical/Minimizer.cpp \
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Numerical/RootFinder.cpp \
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Numerical/Solver.cpp \
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Physics/CorrelatorFitter.cpp \
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Physics/EffectiveMass.cpp \
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Statistics/FitInterface.cpp \
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Statistics/Histogram.cpp \
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Statistics/Random.cpp \
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@ -97,6 +99,8 @@ HPPFILES = \
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Numerical/Minimizer.hpp \
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Numerical/RootFinder.hpp \
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Numerical/Solver.hpp \
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Physics/CorrelatorFitter.hpp \
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Physics/EffectiveMass.hpp \
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Statistics/Dataset.hpp \
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Statistics/FitInterface.hpp \
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Statistics/Histogram.hpp \
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331
lib/Physics/CorrelatorFitter.cpp
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331
lib/Physics/CorrelatorFitter.cpp
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@ -0,0 +1,331 @@
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/*
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* CorrelatorFitter.cpp, part of LatAnalyze 3
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*
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* Copyright (C) 2013 - 2020 Antonin Portelli
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*
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* LatAnalyze 3 is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* LatAnalyze 3 is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with LatAnalyze 3. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <LatAnalyze/Physics/CorrelatorFitter.hpp>
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#include <LatAnalyze/includes.hpp>
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using namespace std;
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using namespace Latan;
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DoubleModel CorrelatorModels::makeExpModel(const Index nState)
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{
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DoubleModel mod;
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mod.setFunction([nState](const double *x, const double *p)
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{
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double res = 0.;
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for (unsigned int i = 0; i < nState; ++i)
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{
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res += p[2*i + 1]*exp(-p[2*i]*x[0]);
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}
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return res;
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}, 1, 2*nState);
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for (unsigned int i = 0; i < nState; ++i)
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{
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mod.parName().setName(2*i, "E_" + strFrom(i));
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mod.parName().setName(2*i + 1, "Z_" + strFrom(i));
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}
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return mod;
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}
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DoubleModel CorrelatorModels::makeCoshModel(const Index nState, const Index nt)
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{
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DoubleModel mod;
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mod.setFunction([nState, nt](const double *x, const double *p)
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{
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double res = 0.;
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for (unsigned int i = 0; i < nState; ++i)
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{
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res += p[2*i + 1]*(exp(-p[2*i]*x[0]) + exp(-p[2*i]*(nt - x[0])));
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}
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return res;
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}, 1, 2*nState);
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for (unsigned int i = 0; i < nState; ++i)
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{
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mod.parName().setName(2*i, "E_" + strFrom(i));
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mod.parName().setName(2*i + 1, "Z_" + strFrom(i));
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}
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return mod;
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}
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DoubleModel CorrelatorModels::makeSinhModel(const Index nState, const Index nt)
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{
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DoubleModel mod;
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mod.setFunction([nState, nt](const double *x, const double *p)
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{
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double res = 0.;
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for (unsigned int i = 0; i < nState; ++i)
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{
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res += p[2*i + 1]*(exp(-p[2*i]*x[0]) - exp(-p[2*i]*(nt - x[0])));
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}
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return res;
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}, 1, 2*nState);
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for (unsigned int i = 0; i < nState; ++i)
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{
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mod.parName().setName(2*i, "E_" + strFrom(i));
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mod.parName().setName(2*i + 1, "Z_" + strFrom(i));
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}
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return mod;
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}
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DoubleModel CorrelatorModels::makeConstModel(void)
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{
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DoubleModel mod;
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mod.setFunction([](const double *x, const double *p __dumb)
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{
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return x[0];
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}, 1, 1);
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mod.parName().setName(0, "cst");
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return mod;
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}
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DoubleModel CorrelatorModels::makeLinearModel(void)
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{
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DoubleModel mod;
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mod.setFunction([](const double *x, const double *p)
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{
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return p[0] + p[1]*x[0];
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}, 1, 2);
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return mod;
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}
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CorrelatorModels::ModelPar CorrelatorModels::parseModel(const string s)
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{
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smatch sm;
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ModelPar par;
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if (regex_match(s, sm, regex("exp([0-9]+)")))
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{
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par.type = CorrelatorType::exp;
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par.nState = strTo<Index>(sm[0].str());
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}
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else if (regex_match(s, sm, regex("cosh([0-9]+)")))
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{
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par.type = CorrelatorType::cosh;
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par.nState = strTo<Index>(sm[0].str());
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}
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else if (regex_match(s, sm, regex("sinh([0-9]+)")))
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{
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par.type = CorrelatorType::sinh;
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par.nState = strTo<Index>(sm[0].str());
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}
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else if (s == "linear")
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{
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par.type = CorrelatorType::linear;
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par.nState = 1;
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}
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else if (s == "cst")
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{
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par.type = CorrelatorType::cst;
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par.nState = 1;
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}
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else
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{
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par.type = CorrelatorType::undefined;
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par.nState = 0;
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}
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return par;
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}
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DoubleModel CorrelatorModels::makeModel(const CorrelatorModels::ModelPar par,
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const Index nt)
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{
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switch (par.type)
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{
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case CorrelatorType::undefined:
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LATAN_ERROR(Argument, "correlator type is undefined");
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break;
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case CorrelatorType::exp:
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return makeExpModel(par.nState);
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break;
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case CorrelatorType::cosh:
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return makeCoshModel(par.nState, nt);
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break;
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case CorrelatorType::sinh:
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return makeSinhModel(par.nState, nt);
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break;
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case CorrelatorType::linear:
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return makeLinearModel();
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break;
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case CorrelatorType::cst:
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return makeConstModel();
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break;
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}
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}
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DVec CorrelatorModels::parameterGuess(const DMatSample &corr,
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const ModelPar par)
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{
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DVec init;
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Index nt = corr.size();
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switch (par.type)
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{
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case CorrelatorType::undefined:
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LATAN_ERROR(Argument, "correlator type is undefined");
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break;
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case CorrelatorType::exp:
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case CorrelatorType::cosh:
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case CorrelatorType::sinh:
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init.resize(2*par.nState);
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init(0) = log(corr[central](nt/4)/corr[central](nt/4 + 1));
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init(1) = corr[central](nt/4)/(exp(-init(0)*nt/4));
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for (Index p = 2; p < init.size(); p += 2)
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{
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init(p) = 2*init(p - 2);
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init(p + 1) = init(p - 1)/2.;
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}
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break;
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case CorrelatorType::linear:
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init.resize(2);
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init(0) = corr[central](nt/4) - corr[central](nt/4 + 1, 0);
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init(1) = corr[central](nt/4, 0) + nt/4*init(0);
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break;
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case CorrelatorType::cst:
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init.resize(1);
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init(0) = corr[central](nt/4);
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break;
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default:
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break;
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}
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return init;
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}
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CorrelatorFitter::CorrelatorFitter(const DMatSample &corr)
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{
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setCorrelator(corr);
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}
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CorrelatorFitter::CorrelatorFitter(const std::vector<DMatSample> &corr)
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{
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setCorrelators(corr);
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}
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void CorrelatorFitter::setCorrelator(const DMatSample &corr)
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{
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std::vector<DMatSample> vec;
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vec.push_back(corr);
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setCorrelators(vec);
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}
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void CorrelatorFitter::setCorrelators(const std::vector<DMatSample> &corr)
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{
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Index nSample = corr[0].size();
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DMatSample tVec(nSample);
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std::vector<const DMatSample *> ptVec;
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nt_ = corr[0][central].rows();
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tVec.fill(DVec::LinSpaced(nt_, 0, nt_ - 1));
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for (auto &c: corr)
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{
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ptVec.push_back(&c);
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}
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data_.reset(new XYSampleData(corr[0].size()));
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data_->addXDim(nt_, "t/a", true);
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for (unsigned int i = 0; i < corr.size(); ++i)
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{
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data_->addYDim("C_" + strFrom(i) + "(t)");
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}
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data_->setUnidimData(tVec, ptVec);
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model_.resize(corr.size());
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range_.resize(corr.size(), make_pair(0, nt_ - 1));
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thinning_.resize(corr.size(), 1);
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}
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void CorrelatorFitter::setModel(const DoubleModel &model, const Index i)
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{
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model_[i] = model;
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}
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const DoubleModel & CorrelatorFitter::getModel(const Index i) const
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{
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return model_.at(i);
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}
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void CorrelatorFitter::setFitRange(const Index tMin, const Index tMax,
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const Index i)
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{
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range_[i] = make_pair(tMin, tMax);
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refreshRanges();
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}
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void CorrelatorFitter::setCorrelation(const bool isCorrelated, const Index i,
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const Index j)
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{
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data_->assumeYYCorrelated(isCorrelated, i, j);
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}
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DMat CorrelatorFitter::getVarianceMatrix(void)
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{
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return data_->getFitVarMat();
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}
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void CorrelatorFitter::setThinning(const Index thinning, const Index i)
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{
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thinning_[i] = thinning;
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refreshRanges();
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}
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SampleFitResult CorrelatorFitter::fit(Minimizer &minimizer, const DVec &init)
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{
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vector<Minimizer *> vecPt = {&minimizer};
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return fit(vecPt, init);
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}
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SampleFitResult CorrelatorFitter::fit(vector<Minimizer *> &minimizer,
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const DVec &init)
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{
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vector<const DoubleModel *> vecPt(model_.size());
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for (unsigned int i = 0; i < model_.size(); ++i)
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{
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vecPt[i] = &(model_[i]);
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}
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return data_->fit(minimizer, init, vecPt);
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}
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void CorrelatorFitter::refreshRanges(void)
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{
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for (unsigned int i = 0; i < range_.size(); ++i)
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for (Index t = 0; t < nt_; ++t)
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{
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data_->fitPoint((t >= range_[i].first) and (t <= range_[i].second)
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and ((t - range_[i].first) % thinning_[i] == 0), t);
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}
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}
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79
lib/Physics/CorrelatorFitter.hpp
Normal file
79
lib/Physics/CorrelatorFitter.hpp
Normal file
@ -0,0 +1,79 @@
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/*
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* CorrelatorFitter.hpp, part of LatAnalyze 3
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*
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* Copyright (C) 2013 - 2020 Antonin Portelli
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*
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* LatAnalyze 3 is free software: you can redistribute it and/or modify
|
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* it under the terms of the GNU General Public License as published by
|
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* the Free Software Foundation, either version 3 of the License, or
|
||||
* (at your option) any later version.
|
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*
|
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* LatAnalyze 3 is distributed in the hope that it will be useful,
|
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
|
||||
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
|
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* GNU General Public License for more details.
|
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*
|
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* You should have received a copy of the GNU General Public License
|
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* along with LatAnalyze 3. If not, see <http://www.gnu.org/licenses/>.
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*/
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#ifndef Latan_CorrelatorFitter_hpp_
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#define Latan_CorrelatorFitter_hpp_
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#include <LatAnalyze/Global.hpp>
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#include <LatAnalyze/Functional/Model.hpp>
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#include <LatAnalyze/Statistics/XYSampleData.hpp>
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BEGIN_LATAN_NAMESPACE
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enum class CorrelatorType {undefined, exp, cosh, sinh, linear, cst};
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namespace CorrelatorModels
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{
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struct ModelPar
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{
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CorrelatorType type;
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Index nState;
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};
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DoubleModel makeExpModel(const Index nState);
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DoubleModel makeCoshModel(const Index nState, const Index nt);
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DoubleModel makeSinhModel(const Index nState, const Index nt);
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DoubleModel makeConstModel(void);
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DoubleModel makeLinearModel(void);
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ModelPar parseModel(const std::string s);
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DoubleModel makeModel(const ModelPar par, const Index nt);
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DVec parameterGuess(const DMatSample &corr, const ModelPar par);
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};
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class CorrelatorFitter
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{
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public:
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CorrelatorFitter(const DMatSample &corr);
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CorrelatorFitter(const std::vector<DMatSample> &corr);
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void setCorrelator(const DMatSample &corr);
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void setCorrelators(const std::vector<DMatSample> &corr);
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const DMatSample & getCorrelator(const Index i = 0) const;
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const std::vector<DMatSample> & getCorrelators(void) const;
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void setModel(const DoubleModel &model, const Index i = 0);
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const DoubleModel & getModel(const Index i = 0) const;
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void setFitRange(const Index tMin, const Index tMax, const Index i = 0);
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void setCorrelation(const bool isCorrelated, const Index i = 0,
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const Index j = 0);
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DMat getVarianceMatrix(void);
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void setThinning(const Index thinning, const Index i = 0);
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SampleFitResult fit(Minimizer &minimizer, const DVec &init);
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SampleFitResult fit(std::vector<Minimizer *> &minimizer, const DVec &init);
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private:
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void refreshRanges(void);
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private:
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Index nt_{0};
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std::unique_ptr<XYSampleData> data_;
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std::vector<DoubleModel> model_;
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std::vector<std::pair<Index, Index>> range_;
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std::vector<Index> thinning_;
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};
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END_LATAN_NAMESPACE
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#endif // Latan_CorrelatorFitter_hpp_
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103
lib/Physics/EffectiveMass.cpp
Normal file
103
lib/Physics/EffectiveMass.cpp
Normal file
@ -0,0 +1,103 @@
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/*
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* EffectiveMass.cpp, part of LatAnalyze 3
|
||||
*
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* Copyright (C) 2013 - 2020 Antonin Portelli
|
||||
*
|
||||
* LatAnalyze 3 is free software: you can redistribute it and/or modify
|
||||
* it under the terms of the GNU General Public License as published by
|
||||
* the Free Software Foundation, either version 3 of the License, or
|
||||
* (at your option) any later version.
|
||||
*
|
||||
* LatAnalyze 3 is distributed in the hope that it will be useful,
|
||||
* but WITHOUT ANY WARRANTY; without even the implied warranty of
|
||||
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
|
||||
* GNU General Public License for more details.
|
||||
*
|
||||
* You should have received a copy of the GNU General Public License
|
||||
* along with LatAnalyze 3. If not, see <http://www.gnu.org/licenses/>.
|
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*/
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#include <LatAnalyze/Physics/EffectiveMass.hpp>
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#include <LatAnalyze/includes.hpp>
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using namespace std;
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using namespace Latan;
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// constructors ////////////////////////////////////////////////////////////////
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EffectiveMass::EffectiveMass(const CorrelatorType type)
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: type_(type)
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{}
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// access //////////////////////////////////////////////////////////////////////
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CorrelatorType EffectiveMass::getType(void) const
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{
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return type_;
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}
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void EffectiveMass::setType(const CorrelatorType type)
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{
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type_ = type;
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}
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// compute effective mass //////////////////////////////////////////////////////
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DVec EffectiveMass::operator()(const DVec &corr) const
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{
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Index nt = corr.size();
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DVec em;
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||||
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||||
if (nt < 2)
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||||
{
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LATAN_ERROR(Size, "input vector has less than 2 elements");
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}
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||||
switch (type_)
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{
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case CorrelatorType::undefined:
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LATAN_ERROR(Argument, "correlator type is undefined");
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break;
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case CorrelatorType::exp:
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em.resize(nt - 1);
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for (Index t = 1; t < nt; ++t)
|
||||
{
|
||||
em(t - 1) = log(corr(t - 1)/corr(t));
|
||||
}
|
||||
break;
|
||||
case CorrelatorType::cosh:
|
||||
em.resize(nt - 2);
|
||||
for (Index t = 1; t < nt - 1; ++t)
|
||||
{
|
||||
em(t - 1) = acosh((corr(t - 1) + corr(t + 1))/(2.*corr(t)));
|
||||
}
|
||||
break;
|
||||
case CorrelatorType::sinh:
|
||||
em.resize(nt - 2);
|
||||
for (Index t = 1; t < nt - 1; ++t)
|
||||
{
|
||||
em(t - 1) = acosh((corr(t - 1) + corr(t + 1))/(2.*corr(t)));
|
||||
}
|
||||
break;
|
||||
case CorrelatorType::linear:
|
||||
em.resize(nt - 1);
|
||||
for (Index t = 0; t < nt - 1; ++t)
|
||||
{
|
||||
em(t) = corr(t) - corr(t - 1);
|
||||
}
|
||||
break;
|
||||
case CorrelatorType::cst:
|
||||
em = corr;
|
||||
break;
|
||||
}
|
||||
|
||||
return em;
|
||||
}
|
||||
|
||||
DMatSample EffectiveMass::operator()(const DMatSample &corr) const
|
||||
{
|
||||
DMatSample em(corr.size());
|
||||
|
||||
FOR_STAT_ARRAY(em, s)
|
||||
{
|
||||
em[s] = (*this)(corr[s]);
|
||||
}
|
||||
|
||||
return em;
|
||||
}
|
49
lib/Physics/EffectiveMass.hpp
Normal file
49
lib/Physics/EffectiveMass.hpp
Normal file
@ -0,0 +1,49 @@
|
||||
/*
|
||||
* EffectiveMass.hpp, part of LatAnalyze 3
|
||||
*
|
||||
* Copyright (C) 2013 - 2020 Antonin Portelli
|
||||
*
|
||||
* LatAnalyze 3 is free software: you can redistribute it and/or modify
|
||||
* it under the terms of the GNU General Public License as published by
|
||||
* the Free Software Foundation, either version 3 of the License, or
|
||||
* (at your option) any later version.
|
||||
*
|
||||
* LatAnalyze 3 is distributed in the hope that it will be useful,
|
||||
* but WITHOUT ANY WARRANTY; without even the implied warranty of
|
||||
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
|
||||
* GNU General Public License for more details.
|
||||
*
|
||||
* You should have received a copy of the GNU General Public License
|
||||
* along with LatAnalyze 3. If not, see <http://www.gnu.org/licenses/>.
|
||||
*/
|
||||
|
||||
#ifndef Latan_EffectiveMass_hpp_
|
||||
#define Latan_EffectiveMass_hpp_
|
||||
|
||||
#include <LatAnalyze/Global.hpp>
|
||||
#include <LatAnalyze/Statistics/MatSample.hpp>
|
||||
#include <LatAnalyze/Physics/CorrelatorFitter.hpp>
|
||||
|
||||
BEGIN_LATAN_NAMESPACE
|
||||
|
||||
/******************************************************************************
|
||||
* Effective mass class *
|
||||
******************************************************************************/
|
||||
class EffectiveMass
|
||||
{
|
||||
public:
|
||||
// constructors
|
||||
EffectiveMass(const CorrelatorType type = CorrelatorType::exp);
|
||||
// access
|
||||
CorrelatorType getType(void) const;
|
||||
void setType(const CorrelatorType type);
|
||||
// compute effective mass
|
||||
DVec operator()(const DVec &corr) const;
|
||||
DMatSample operator()(const DMatSample &corr) const;
|
||||
private:
|
||||
CorrelatorType type_;
|
||||
};
|
||||
|
||||
END_LATAN_NAMESPACE
|
||||
|
||||
#endif // Latan_EffectiveMass_hpp_
|
Loading…
Reference in New Issue
Block a user