2017-03-30 10:30:58 +01:00
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/*************************************************************************************
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Grid physics library, www.github.com/paboyle/Grid
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2018-09-01 21:30:30 +01:00
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Source file: Hadrons/Modules/MContraction/Gamma3pt.hpp
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2017-03-30 10:30:58 +01:00
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2019-02-05 18:55:24 +00:00
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Copyright (C) 2015-2019
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2017-03-30 10:30:58 +01:00
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2017-12-26 13:16:47 +00:00
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Author: Antonin Portelli <antonin.portelli@me.com>
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Author: Lanny91 <andrew.lawson@gmail.com>
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2017-03-30 10:30:58 +01:00
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This program 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 2 of the License, or
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(at your option) any later version.
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This program 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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You should have received a copy of the GNU General Public License along
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with this program; if not, write to the Free Software Foundation, Inc.,
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51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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See the full license in the file "LICENSE" in the top level distribution directory
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*************************************************************************************/
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/* END LEGAL */
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2017-06-06 17:45:30 +01:00
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#ifndef Hadrons_MContraction_Gamma3pt_hpp_
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#define Hadrons_MContraction_Gamma3pt_hpp_
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2018-08-28 15:00:40 +01:00
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#include <Hadrons/Global.hpp>
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#include <Hadrons/Module.hpp>
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#include <Hadrons/ModuleFactory.hpp>
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BEGIN_HADRONS_NAMESPACE
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/*
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* 3pt contraction with gamma matrix insertion.
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*
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* Schematic:
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*
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* q2 q3
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* /----<------*------<----¬
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* / gamma \
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* / \
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* i * * f
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* \ /
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* \ /
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* \----------->----------/
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* q1
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*
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* trace(g5*q1*adj(q2)*g5*gamma*q3)
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*
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* options:
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* - q1: sink smeared propagator, source at i
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* - q2: propagator, source at i
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* - q3: propagator, source at f
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* - gammas: gamma matrices to insert
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* (space-separated strings e.g. "GammaT GammaX GammaY")
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* - tSnk: sink position for propagator q1.
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*
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*/
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/******************************************************************************
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* Gamma3pt *
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******************************************************************************/
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BEGIN_MODULE_NAMESPACE(MContraction)
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class Gamma3ptPar: Serializable
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{
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public:
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GRID_SERIALIZABLE_CLASS_MEMBERS(Gamma3ptPar,
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std::string, q1,
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std::string, q2,
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std::string, q3,
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std::string, gamma,
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unsigned int, tSnk,
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std::string, output);
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};
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template <typename FImpl1, typename FImpl2, typename FImpl3>
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class TGamma3pt: public Module<Gamma3ptPar>
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{
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FERM_TYPE_ALIASES(FImpl1, 1);
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FERM_TYPE_ALIASES(FImpl2, 2);
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FERM_TYPE_ALIASES(FImpl3, 3);
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class Result: Serializable
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{
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public:
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GRID_SERIALIZABLE_CLASS_MEMBERS(Result,
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Gamma::Algebra, gamma,
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std::vector<Complex>, corr);
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};
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public:
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// constructor
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TGamma3pt(const std::string name);
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// destructor
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virtual ~TGamma3pt(void) {};
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// dependency relation
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virtual std::vector<std::string> getInput(void);
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virtual std::vector<std::string> getOutput(void);
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virtual void parseGammaString(std::vector<Gamma::Algebra> &gammaList);
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protected:
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// setup
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virtual void setup(void);
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// execution
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virtual void execute(void);
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};
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2018-04-23 17:35:01 +01:00
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MODULE_REGISTER_TMP(Gamma3pt, ARG(TGamma3pt<FIMPL, FIMPL, FIMPL>), MContraction);
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/******************************************************************************
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* TGamma3pt implementation *
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******************************************************************************/
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// constructor /////////////////////////////////////////////////////////////////
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template <typename FImpl1, typename FImpl2, typename FImpl3>
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TGamma3pt<FImpl1, FImpl2, FImpl3>::TGamma3pt(const std::string name)
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: Module<Gamma3ptPar>(name)
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{}
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// dependencies/products ///////////////////////////////////////////////////////
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template <typename FImpl1, typename FImpl2, typename FImpl3>
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std::vector<std::string> TGamma3pt<FImpl1, FImpl2, FImpl3>::getInput(void)
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{
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std::vector<std::string> in = {par().q1, par().q2, par().q3};
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return in;
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}
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template <typename FImpl1, typename FImpl2, typename FImpl3>
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std::vector<std::string> TGamma3pt<FImpl1, FImpl2, FImpl3>::getOutput(void)
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{
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std::vector<std::string> out = {};
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return out;
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}
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// setup ///////////////////////////////////////////////////////////////////////
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template <typename FImpl1, typename FImpl2, typename FImpl3>
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void TGamma3pt<FImpl1, FImpl2, FImpl3>::setup(void)
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{
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envTmpLat(LatticeComplex, "c");
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}
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template <typename FImpl1, typename FImpl2, typename FImpl3>
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void TGamma3pt<FImpl1, FImpl2, FImpl3>::parseGammaString(std::vector<Gamma::Algebra> &gammaList)
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{
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gammaList.clear();
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// Determine gamma matrices to insert at source/sink.
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if (par().gamma.compare("all") == 0)
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{
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// Do all contractions.
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for (unsigned int i = 1; i < Gamma::nGamma; i += 2)
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{
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gammaList.push_back((Gamma::Algebra)i);
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}
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}
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else
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{
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// Parse individual contractions from input string.
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gammaList = strToVec<Gamma::Algebra>(par().gamma);
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}
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}
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// execution ///////////////////////////////////////////////////////////////////
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template <typename FImpl1, typename FImpl2, typename FImpl3>
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void TGamma3pt<FImpl1, FImpl2, FImpl3>::execute(void)
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{
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LOG(Message) << "Computing 3pt contractions '" << getName() << "' using"
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<< " quarks '" << par().q1 << "', '" << par().q2 << "' and '"
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<< par().q3 << "', with " << par().gamma << " insertions."
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<< std::endl;
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// Initialise variables. q2 and q3 are normal propagators, q1 may be
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// sink smeared.
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auto &q1 = envGet(SlicedPropagator1, par().q1);
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auto &q2 = envGet(PropagatorField2, par().q2);
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auto &q3 = envGet(PropagatorField2, par().q3);
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Gamma g5(Gamma::Algebra::Gamma5);
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std::vector<Gamma::Algebra> gammaList;
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std::vector<TComplex> buf;
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std::vector<Result> result;
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int nt = env().getDim(Tp);
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parseGammaString(gammaList);
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result.resize(gammaList.size());
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for (unsigned int i = 0; i < result.size(); ++i)
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{
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result[i].gamma = gammaList[i];
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result[i].corr.resize(nt);
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}
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// Extract relevant timeslice of sinked propagator q1, then contract &
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// sum over all spacial positions of gamma insertion.
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SitePropagator1 q1Snk = q1[par().tSnk];
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envGetTmp(LatticeComplex, c);
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for (unsigned int i = 0; i < result.size(); ++i)
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{
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Gamma gamma(gammaList[i]);
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c = trace(g5*q1Snk*adj(q2)*(g5*gamma)*q3);
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sliceSum(c, buf, Tp);
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for (unsigned int t = 0; t < buf.size(); ++t)
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{
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result[i].corr[t] = TensorRemove(buf[t]);
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}
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}
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2018-01-23 17:26:50 +00:00
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saveResult(par().output, "gamma3pt", result);
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}
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END_MODULE_NAMESPACE
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END_HADRONS_NAMESPACE
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2017-06-06 17:45:30 +01:00
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#endif // Hadrons_MContraction_Gamma3pt_hpp_
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