Using the Voigtian function in Q-Factor method
The event-based scale factor in the center-of-mass energy
Voigtian Function
- Fitting function(QFM) = Voigtian(p1,p2,p3)+p4*(g9b-carbon distribution)
WBin | voigtian function | event-based scale factor |
p1(Mean) [MeV] | p2(gamma) [MeV] | p3(sigma) [MeV] | p4 |
WBin[4]:1.4 GeV | [139,140] | 35;[5,200] | 35;[5,200] | 0.58;[0.0,1.0] |
- Fitting function(QFM) = Voigtian(p1,p2,p3)+p4*(g9b-carbon distribution)
WBin | voigtian function | event-based scale factor |
p1(Mean) [MeV] | p2(gamma) [MeV] | p3(sigma) [MeV] | p4 |
WBin[5]:1.45 GeV | [139,140] | 35;[5,200] | 35;[5,200] | 0.58;[0.0,1.0] |
- Fitting function(QFM) = Voigtian(p1,p2,p3)+p4*(g9b-carbon distribution)
WBin | voigtian function | event-based scale factor |
p1(Mean) [MeV] | p2(gamma) [MeV] | p3(sigma) [MeV] | p4 |
WBin[6]:1.5 GeV | [139,140] | 35;[5,200] | 35;[5,200] | 0.58;[0.0,1.0] |
- Fitting function(QFM) = Voigtian(p1,p2,p3)+p4*(g9b-carbon distribution)
WBin | voigtian function | event-based scale factor |
p1(Mean) [MeV] | p2(gamma) [MeV] | p3(sigma) [MeV] | p4 |
WBin[7]:1.55 GeV | [139,140] | 35;[5,200] | 35;[5,200] | 0.58;[0.0,1.0] |
- Fitting function(QFM) = Voigtian(p1,p2,p3)+p4*(g9b-carbon distribution)
WBin | voigtian function | event-based scale factor |
p1(Mean) [MeV] | p2(gamma) [MeV] | p3(sigma) [MeV] | p4 |
WBin[8]:1.6 GeV | [139,140] | 35;[5,200] | 35;[5,200] | 0.58;[0.0,1.0] |
- Fitting function(QFM) = Voigtian(p1,p2,p3)+p4*(g9b-carbon distribution)
WBin | voigtian function | event-based scale factor |
p1(Mean) [MeV] | p2(gamma) [MeV] | p3(sigma) [MeV] | p4 |
WBin[9]:1.65 GeV | [139,140] | 35;[5,200] | 35;[5,200] | 0.58;[0.0,1.0] |
- Fitting function(QFM) = Voigtian(p1,p2,p3)+p4*(g9b-carbon distribution)
WBin | voigtian function | event-based scale factor |
p1(Mean) [MeV] | p2(gamma) [MeV] | p3(sigma) [MeV] | p4 |
WBin[10]:1.7 GeV | [139,140] | 35;[5,200] | 35;[5,200] | 0.58;[0.0,1.0] |
- Fitting function(QFM) = Voigtian(p1,p2,p3)+p4*(g9b-carbon distribution)
WBin | voigtian function | event-based scale factor |
p1(Mean) [MeV] | p2(gamma) [MeV] | p3(sigma) [MeV] | p4 |
WBin[11]:1.75 GeV | [139,140] | 35;[5,200] | 35;[5,200] | 0.58;[0.0,1.0] |
- Fitting function(QFM) = Voigtian(p1,p2,p3)+p4*(g9b-carbon distribution)
WBin | voigtian function | event-based scale factor |
p1(Mean) [MeV] | p2(gamma) [MeV] | p3(sigma) [MeV] | p4 |
WBin[12]:1.8 GeV | [139,140] | 35;[5,200] | 35;[5,200] | 0.58;[0.0,1.0] |
- Fitting function(QFM) = Voigtian(p1,p2,p3)+p4*(g9b-carbon distribution)
WBin | voigtian function | event-based scale factor |
p1(Mean) [MeV] | p2(gamma) [MeV] | p3(sigma) [MeV] | p4 |
WBin[13]:1.85 GeV | [139,140] | 35;[5,200] | 35;[5,200] | 0.58;[0.0,1.0] |
- Fitting function(QFM) = Voigtian(p1,p2,p3)+p4*(g9b-carbon distribution)
WBin | voigtian function | event-based scale factor |
p1(Mean) [MeV] | p2(gamma) [MeV] | p3(sigma) [MeV] | p4 |
WBin[14]:1.9 GeV | [139,140] | 35;[5,200] | 35;[5,200] | 0.58;[0.0,1.0] |
- Fitting function(QFM) = Voigtian(p1,p2,p3)+p4*(g9b-carbon distribution)
WBin | voigtian function | event-based scale factor |
p1(Mean) [MeV] | p2(gamma) [MeV] | p3(sigma) [MeV] | p4 |
WBin[15]:1.95 GeV | [139,140] | 35;[5,200] | 35;[5,200] | 0.58;[0.0,1.0] |
- Fitting function(QFM) = Voigtian(p1,p2,p3)+p4*(g9b-carbon distribution)
WBin | voigtian function | event-based scale factor |
p1(Mean) [MeV] | p2(gamma) [MeV] | p3(sigma) [MeV] | p4 |
WBin[16]:2.0 GeV | [139,140] | 35;[5,200] | 35;[5,200] | 0.58;[0.0\
,1.0] |
- Fitting function(QFM) = Voigtian(p1,p2,p3)+p4*(g9b-carbon distribution)
WBin | voigtian function | event-based scale factor |
p1(Mean) [MeV] | p2(gamma) [MeV] | p3(sigma) [MeV] | p4 |
WBin[17]:2.05 GeV | [139,140] | 35;[5,200] | 35;[5,200] | 0.58;[0.0,1.0] |
- Fitting function(QFM) = Voigtian(p1,p2,p3)+p4*(g9b-carbon distribution)
WBin | voigtian function | event-based scale factor |
p1(Mean) [MeV] | p2(gamma) [MeV] | p3(sigma) [MeV] | p4 |
WBin[18]:2.1 GeV | [139,140] | 35;[5,200] | 35;[5,200] | 0.58;[0.0,1.0] |