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Smaller deltaH down to 7000s on t=0.5 trajectory
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@ -181,7 +181,7 @@ int main(int argc, char **argv) {
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// MD.name = std::string("MinimumNorm2");
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// TrajL = 2
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// 4/2 => 0.6 dH
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// 3/3 => ?? dH
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// 3/3 => 0.8 dH .. depth 3, slower
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//MD.MDsteps = 4;
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MD.MDsteps = 3;
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MD.trajL = 0.5;
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@ -223,13 +223,15 @@ int main(int argc, char **argv) {
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RealD c = 0.5;
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Real beta = 2.13;
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// Real light_mass = 5.4e-4;
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Real light_mass = 7.8e-4;
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Real light_mass = 7.8e-4;
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Real light_mass_dir = 0.01;
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Real strange_mass = 0.0362;
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Real pv_mass = 1.0;
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std::vector<Real> hasenbusch({ light_mass, 0.005, 0.0145, 0.045, 0.108, 0.25, 0.51 , pv_mass });
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std::vector<Real> hasenbusch({ 0.01, 0.045, 0.108, 0.25, 0.51 , pv_mass });
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// std::vector<Real> hasenbusch({ light_mass, 0.01, 0.045, 0.108, 0.25, 0.51 , pv_mass });
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// std::vector<Real> hasenbusch({ light_mass, 0.005, 0.0145, 0.045, 0.108, 0.25, 0.51 , pv_mass }); // Updated
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// std::vector<Real> hasenbusch({ light_mass, 0.0145, 0.045, 0.108, 0.25, 0.51 , 0.75 , pv_mass });
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OneFlavourRationalParams OFRp; // Up/down
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OFRp.lo = 4.0e-5;
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OFRp.hi = 90.0;
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@ -238,18 +240,24 @@ int main(int argc, char **argv) {
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OFRp.mdtolerance= 1.0e-3;
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// OFRp.degree = 20; converges
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// OFRp.degree = 16;
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OFRp.degree = 12;
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OFRp.degree = 18;
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OFRp.precision= 80;
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OFRp.BoundsCheckFreq=0;
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std::vector<RealD> ActionTolByPole({
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1.0e-8,1.0e-8,1.0e-8,1.0e-8,
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1.0e-8,1.0e-8,1.0e-8,1.0e-8,
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1.0e-8,1.0e-8,1.0e-8,1.0e-8
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1.0e-8,1.0e-8,1.0e-8,1.0e-8,
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1.0e-8,1.0e-8,1.0e-8,1.0e-8,
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1.0e-8,1.0e-8
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});
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std::vector<RealD> MDTolByPole({
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1.0e-6,3.0e-7,1.0e-7,1.0e-7,
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1.0e-5,5.0e-6,1.0e-6,1.0e-7, // soften convergence more more
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// 1.0e-6,3.0e-7,1.0e-7,1.0e-7,
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// 3.0e-6,1.0e-6,1.0e-7,1.0e-7, // soften convergence
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1.0e-8,1.0e-8,1.0e-8,1.0e-8,
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1.0e-8,1.0e-8,1.0e-8,1.0e-8
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1.0e-8,1.0e-8,1.0e-8,1.0e-8,
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1.0e-8,1.0e-8,1.0e-8,1.0e-8,
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1.0e-8,1.0e-8
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});
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auto GridPtr = TheHMC.Resources.GetCartesian();
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@ -540,12 +548,12 @@ int main(int argc, char **argv) {
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*Numerators[h],*Denominators[h],
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*NumeratorsF[h],*DenominatorsF[h],
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*NumeratorsD2[h],*DenominatorsD2[h],
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OFRp, 200) );
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OFRp, 400) );
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Bdys.push_back( new OneFlavourEvenOddRatioRationalMixedPrecPseudoFermionAction<FermionImplPolicy,FermionImplPolicyF,FermionImplPolicyD2>(
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*Numerators[h],*Denominators[h],
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*NumeratorsF[h],*DenominatorsF[h],
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*NumeratorsD2[h],*DenominatorsD2[h],
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OFRp, 200) );
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OFRp, 400) );
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#else
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Bdys.push_back( new OneFlavourEvenOddRatioRationalPseudoFermionAction<FermionImplPolicy>(*Numerators[h],*Denominators[h],OFRp));
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Bdys.push_back( new OneFlavourEvenOddRatioRationalPseudoFermionAction<FermionImplPolicy>(*Numerators[h],*Denominators[h],OFRp));
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