1 | # -------------------- Define your energy estimator -------------------
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2 |
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3 | # Manually optimized (for example using trainenergy.C)
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4 | EstimateEnergy.Rule: MHillas.fSize^0.906*pow(10, -0.831*(MHillasSrc.fDist*3.37e-3-0.161)^2*(MHillasSrc.fDist*3.37e-3>0.161) + 2.21*(MHillasSrc.fDist*3.37e-3-0.493)^2*(MHillasSrc.fDist*3.37e-3>0.493) + 8.18e-6*MPointingPos.fZd^2.82 - 0.1*MNewImagePar.fLeakage1^0.2)
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5 |
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6 | # You can use instead the Random Forest energy estimator
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7 | # (for example trained by trainenergy.C)
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8 | #EstimateEnergy: MRanForestCalc
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9 | #EstimateEnergy.NameOutput: MEnergyEst
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10 | #EstimateEnergy.FileName: rf-energy.root
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11 | #EstimateEnergy.Debug: No
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12 |
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13 | # ------------------------ Define your binnings -----------------------
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14 |
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15 | # The energy binning is mandatory
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16 | BinningEnergyEst.Raw: 18 53 35800 log
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17 |
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18 | # Binnings used for the Energy- and Disp-tab
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19 | #BinningSize.Raw: 50 10 100000 log
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20 | #BinningLeakage.Raw: 50 0 0.3 lin
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21 | #BinningEnergyResidual.Raw: 51 -1 1 lin
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22 | #BinningResidualDist.Raw: 51 -1 1 lin
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23 |
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24 | # A change of the theta binning must be done in ganymed (see below) :(
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25 | #BinningTheta.Raw: 101 -0.005 0.505 asin
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26 |
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27 | # --------------- Setup the weighting for your spectrum ---------------
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28 | # For more details see McSpectrumWeight::ReadEnv
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29 |
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30 | # A simple power law with a differential spectral index of -4
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31 | #MMcSpectrumWeight.NewSlope: -4
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32 |
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33 | # Give a formula for the spectrum. Capital X is a place-holder
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34 | # for the energy (eg. the crab-spectrum from our publication)
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35 | #MMcSpectrumWeight.Formula: pow(X/300, -2.31-0.26*log10(X/300))
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36 |
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37 | # ----------------------- Additional setup ----------------------------
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38 |
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39 | # In the loop filling the ThetaSq histogram the theta cut is switched off
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40 | # and the theta-cut is implicitly done in the histogram. Reading the
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41 | # Monte Carlo for determining the collection area there is no theta-
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42 | # histogram involved, thus you need the theta cut switched on
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43 | Spectrum.Cut1.ThetaCut: On
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44 |
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45 | # You may want to change the scale region to a different region than
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46 | # previously used in your ganymed-file. This might be usefull for
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47 | # on/off-data. Note, that the result can also depend on what else
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48 | # was setup for your MAlphaFitter in ganymed.
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49 | #MAlphaFitter.ScaleMin: 0.137
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50 | #MAlphaFitter.ScaleMax: 0.500
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51 |
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52 | # You may use this to change the scale and/or fit region for
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53 | # determination of the excess vs energy (can be usefull in On/Off mode)
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54 | #MAlphaFitter.ScaleMode: Fixed
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55 |
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56 | # You may want to allow scaling of each energy bin individually. (This
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57 | # can be useful if on- and off- data in wobble mode do not agree well)
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58 | #MAlphaFitter.ScaleMode: background
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59 | #MAlphaFitter.BackgroundFitMin: 0.09
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60 | #MAlphaFitter.BackgroundFitMax: 0.25
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61 |
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62 | # ------------------------- Additional cut ----------------------------
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63 |
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64 | # You can apply a cut in addition to all other cuts to your data and
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65 | # Monte Carlos. This can be usefull for example to setup a second
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66 | # MFMagicCuts with a tighter behaviour assuming that your ganymed
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67 | # was written with a really loose cut.
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68 | #CutS.Inverted: Yes
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69 | #CutS.Condition: MFMagicCuts
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70 | #CutS.ThetaCut: None
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71 | #CutS.HadronnesCut: Area
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72 | # Parametrization of Area
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73 | #CutS.Param2: 0.215468
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74 | #CutS.Param3: 5.63973
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75 | #CutS.Param4: 0.0836169
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76 |
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77 | # --------------------------- Other binnings --------------------------
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78 |
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79 | # Binnings that are used by sponde but can not/shoud not be changed
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80 | # because they are taken from the ganymed file
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81 | #BinningTheta
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82 | #BinningWidth
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83 | #BinningLength
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84 | #BinningDist
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85 | #BinningM3Long
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86 | #BinningM3Trans
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87 | #BinningSlope
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88 | #BinningAsym
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89 | #BinningConc1
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