17 double weight[kNPidType];
22 for (
int k=0;k<cand->GetMvdHits(); k++) {
23 dE+=cand->GetMvdHitdE(k);
24 dx+=cand->GetMvdHitdx(k);
25 fmomentum+=cand->GetMvdHitMomentum(k);
29 fmomentum/=cand->GetMvdHits();
34 CalcLikelihood(weight);
36 cand->SetLikelihood(2212, weight[kProton]);
37 cand->SetLikelihood(211, weight[kPion]);
38 cand->SetLikelihood(321, weight[kKaon]);
39 cand->SetLikelihood(13, weight[kMuon]);
40 cand->SetLikelihood(11, weight[kElectron]);
96 static float eb=0.14e-6;
98 static float c=2.99792458e8;
100 static float Mass[
kNPidType]={ 0.511e-3, 0.1058, 0.1396, 0.4937, 0.9383 };
102 double sqrBeta=1/(1+pow(Mass[part]/
fmomentum,2));
103 return 4.9312e-05 * (
log(2*Mass[
kElectron]*c*c/eb*sqrBeta/(1-sqrBeta))-sqrBeta)/sqrBeta;
112 return TMath::Gaus(s_mpv, 0, width2,
true);
114 return TMath::Landau(s_mpv, 0, width1,
true);
116 static double x[12] = { 0.96028985649753623, 0.79666647741362674,
117 0.52553240991632899, 0.18343464249564980,
118 0.98940093499164993, 0.94457502307323258,
119 0.86563120238783174, 0.75540440835500303,
120 0.61787624440264375, 0.45801677765722739,
121 0.28160355077925891, 0.09501250983763744};
123 static double w[12] = { 0.10122853629037626, 0.22238103445337447,
124 0.31370664587788729, 0.36268378337836198,
125 0.02715245941175409, 0.06225352393864789,
126 0.09515851168249278, 0.12462897125553387,
127 0.14959598881657673, 0.16915651939500254,
128 0.18260341504492359, 0.18945061045506850};
130 double h, bb, aa,
c1,
c2, u, s8, s16,
f1,
f2;
147 f1 = TMath::Landau(s_mpv+xx, 0, width1,
true)*TMath::Gaus(xx, 0, width2,
true);
149 f2 = TMath::Landau(s_mpv+xx, 0, width1,
true)*TMath::Gaus(xx, 0, width2,
true);
156 f1 = TMath::Landau(s_mpv+xx, 0, width1,
true)*TMath::Gaus(xx, 0, width2,
true);
158 f2 = TMath::Landau(s_mpv+xx, 0, width1,
true)*TMath::Gaus(xx, 0, width2,
true);
159 s16+= w[
i]*(f1 +
f2);
162 if (
TMath::Abs(s16-c2*s8) <= 1e-12*(s16+1) ) {
234 return c0+c1*(x1-
x0)+d1*(x-x1);
238 return c0+c1*(x-
x0)+pow(x0-x,3)*(a3+(x0-
x)*(a4+(x0-x)*a5));
246 return +3.81174e-04+x*(-2.25108e-04+x*+5.45154e-05);
248 return -5.28145e-05+x*(+8.29883e-04+x*-5.35972e-04);
252 return +2.61134e-04+x*(-1.30818e-04+x*+3.44165e-05);
254 return +3.41858e-04+x*(-3.21115e-04+x*+1.37459e-04);
258 return +1.88718e-04+x*(-6.38948e-05+x*+1.78590e-05);
260 return +1.82872e-04+x*(-1.28373e-04+x*+8.01459e-05);
264 return +1.06142e-04+x*(+3.68777e-05+x*-1.00190e-05);
266 return +1.89374e-04+x*(-1.46441e-04+x*+9.10813e-05);
271 return +1.27955e-04+x*(-3.15732e-06+x*+9.64736e-06);
283 return +6.41067e-04+x*(-3.82507e-04+x*+9.03732e-05);
285 return +6.40328e-04-3.21725e-04*x+3.17708e-05*pow(x,-3);
289 return +2.22504e-04+x*(-6.40051e-06+x*+2.14434e-06);
291 return +3.86684e-04-1.61873e-04*x+7.76586e-06*pow(x,-3);
295 return +1.32999e-04+x*(+1.19714e-04+x*-3.53302e-05);
297 return +2.21603e-04-3.21357e-06*x+4.64793e-06*pow(x,-2);
301 return +7.84582e-05+x*(+1.88988e-04+x*-5.49637e-05);
303 return +1.67388e-04+5.67991e-05*x+3.42702e-06*pow(x,-2);
308 return +4.08849e-04-3.56548e-05*x+1.84825e-08*pow(x,-3);
static double MeanEnergyLoss(PidType particle)
static double mpv(PidType particle)
static void CalcLikelihood(PndMvdPidCand *cand)
friend F32vec4 log(const F32vec4 &a)
static double width2(PidType particle)
static double LandauGaus(double s_mpv, double width1, double width2)
void SetLikelihood(int lundId, double likelihood)
static double width1(PidType particle)
static double fenergyloss