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DECLARE_SOA_COLUMN(TOFNSigmaPrProng0, tofNSigmaPrProng0, float); //! NsigmaTOFPr for prong0, o2-linter: disable=name/o2-column (written to disk)
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DECLARE_SOA_COLUMN(TOFNSigmaPrProng1, tofNSigmaPrProng1, float); //! NsigmaTOFPr for prong1, o2-linter: disable=name/o2-column (written to disk)
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DECLARE_SOA_COLUMN(TOFNSigmaPrProng2, tofNSigmaPrProng2, float); //! NsigmaTOFPr for prong2, o2-linter: disable=name/o2-column (written to disk)
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DECLARE_SOA_COLUMN(TPCNSigmaMuPos, tpcNSigmaMuPos, float); //! NsigmaTPCMu for positive J/psi daughter, o2-linter: disable=name/o2-column (written to disk)
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DECLARE_SOA_COLUMN(TPCNSigmaMuNeg, tpcNSigmaMuNeg, float); //! NsigmaTPCMu for negative J/psi daughter, o2-linter: disable=name/o2-column (written to disk)
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DECLARE_SOA_COLUMN(TPCNSigmaElPos, tpcNSigmaElPos, float); //! NsigmaTPCEl for positive J/psi daughter, o2-linter: disable=name/o2-column (written to disk)
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DECLARE_SOA_COLUMN(TPCNSigmaElNeg, tpcNSigmaElNeg, float); //! NsigmaTPCEl for negative J/psi daughter, o2-linter: disable=name/o2-column (written to disk)
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DECLARE_SOA_COLUMN(TOFNSigmaMuPos, tofNSigmaMuPos, float); //! NsigmaTPCMu for positive J/psi daughter, o2-linter: disable=name/o2-column (written to disk)
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DECLARE_SOA_COLUMN(TOFNSigmaMuNeg, tofNSigmaMuNeg, float); //! NsigmaTPCMu for negative J/psi daughter, o2-linter: disable=name/o2-column (written to disk)
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DECLARE_SOA_COLUMN(TOFNSigmaElPos, tofNSigmaElPos, float); //! NsigmaTPCEl for positive J/psi daughter, o2-linter: disable=name/o2-column (written to disk)
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DECLARE_SOA_COLUMN(TOFNSigmaElNeg, tofNSigmaElNeg, float); //! NsigmaTPCEl for negative J/psi daughter, o2-linter: disable=name/o2-column (written to disk)
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// dynamic columns
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DECLARE_SOA_DYNAMIC_COLUMN(TPCTOFNSigmaPi, tpcTofNSigmaPi, //! Combination of NsigmaTPC and NsigmaTOF, o2-linter: disable=name/o2-column (written to disk)
DECLARE_SOA_DYNAMIC_COLUMN(TPCTOFNSigmaPrProng2, tpcTofNSigmaPrProng2, //! Combination of NsigmaTPC and NsigmaTOF, o2-linter: disable=name/o2-column (written to disk)
DECLARE_SOA_DYNAMIC_COLUMN(TPCTOFNSigmaMuPos, tpcTofNSigmaMuPos, //! Combination of NsigmaTPC and NsigmaTOF, o2-linter: disable=name/o2-column (written to disk)
DECLARE_SOA_DYNAMIC_COLUMN(TPCTOFNSigmaMuNeg, tpcTofNSigmaMuNeg, //! Combination of NsigmaTPC and NsigmaTOF, o2-linter: disable=name/o2-column (written to disk)
DECLARE_SOA_DYNAMIC_COLUMN(TPCTOFNSigmaElPos, tpcTofNSigmaElPos, //! Combination of NsigmaTPC and NsigmaTOF, o2-linter: disable=name/o2-column (written to disk)
DECLARE_SOA_DYNAMIC_COLUMN(TPCTOFNSigmaElNeg, tpcTofNSigmaElNeg, //! Combination of NsigmaTPC and NsigmaTOF, o2-linter: disable=name/o2-column (written to disk)
Configurable<double> minParamChange{"minParamChange", 1.e-3, "stop iterations if largest change of any B+ is smaller than this"};
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Configurable<double> minRelChi2Change{"minRelChi2Change", 0.9, "stop iterations is chi2/chi2old > this"};
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Configurable<double> maxChi2JPsiVtx{"maxChi2JPsiVtx", 1e9, "maximum value of chi2 for JPsi vertex computed with DCAFitter"};
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Configurable<double> maxChi2BhadVtx{"maxChi2BhadVtx", 0.9, "maximum value of chi2 for B-hadron vertex computed with DCAFitter"};
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// selection
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Configurable<double> invMassWindowJpsiHadTolerance{"invMassWindowJpsiHadTolerance", 0.01, "invariant-mass window tolerance for J/Psi K pair preselections (GeV/c2)"};
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float myInvMassWindowJpsiK{1.}, myInvMassWindowJpsiK0Star{1.}, myInvMassWindowJpsiPhi{1.}; // variable that will store the value of invMassWindowJpsiK (defined in dataCreatorJpsiKReduced.cxx)
DECLARE_SOA_COLUMN(NSigTpcMuJpsiDauNeg, nSigTpcMuJpsiDauNeg, float); //! TPC Nsigma separation for Jpsi DauNeg with muon mass hypothesis
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DECLARE_SOA_COLUMN(NSigTofMuJpsiDauNeg, nSigTofMuJpsiDauNeg, float); //! TOF Nsigma separation for Jpsi DauNeg with muon mass hypothesis
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DECLARE_SOA_COLUMN(NSigTpcTofMuJpsiDauNeg, nSigTpcTofMuJpsiDauNeg, float); //! Combined TPC and TOF Nsigma separation for Jpsi prong1 with muon mass hypothesis
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DECLARE_SOA_COLUMN(NSigTpcElJpsiDauPos, nSigTpcElJpsiDauPos, float); //! TPC Nsigma separation for Jpsi DauPos with electron mass hypothesis
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DECLARE_SOA_COLUMN(NSigTofElJpsiDauPos, nSigTofElJpsiDauPos, float); //! TOF Nsigma separation for Jpsi DauPos with electron mass hypothesis
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DECLARE_SOA_COLUMN(NSigTpcTofElJpsiDauPos, nSigTpcTofElJpsiDauPos, float); //! Combined TPC and TOF Nsigma separation for Jpsi prong0 with electron mass hypothesis
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DECLARE_SOA_COLUMN(NSigTpcElJpsiDauNeg, nSigTpcElJpsiDauNeg, float); //! TPC Nsigma separation for Jpsi DauNeg with electron mass hypothesis
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DECLARE_SOA_COLUMN(NSigTofElJpsiDauNeg, nSigTofElJpsiDauNeg, float); //! TOF Nsigma separation for Jpsi DauNeg with electron mass hypothesis
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DECLARE_SOA_COLUMN(NSigTpcTofElJpsiDauNeg, nSigTpcTofElJpsiDauNeg, float); //! Combined TPC and TOF Nsigma separation for Jpsi prong1 with electron mass hypothesis
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DECLARE_SOA_COLUMN(DecayLength, decayLength, float); //! Decay length of candidate (cm)
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DECLARE_SOA_COLUMN(DecayLengthXY, decayLengthXY, float); //! Transverse decay length of candidate (cm)
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DECLARE_SOA_COLUMN(DecayLengthNormalised, decayLengthNormalised, float); //! Normalised decay length of candidate
@@ -178,6 +184,18 @@ DECLARE_SOA_TABLE(HfRedCandB0Lites, "AOD", "HFREDCANDB0LITE", //! Table with som
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