| 1 | /* ************************************************************************
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| 2 |
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| 3 | This is the analysis query. It returns two columns for all
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| 4 | signal/background events.
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| 5 |
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| 6 | - `Weight` (Positive for signal (typ. 1),
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| 7 | negative for background (typ. -0.2))
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| 8 | - `LogEnergyEst` logarithm of estimated energy in GeV
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| 9 |
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| 10 | In additon, all columns provided by the 100-clause must be
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| 11 | returned. (Note that you must not add a comma behind it)
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| 12 |
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| 13 | 100| %100:files:: table containing the `FileId`s to analyze.
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| 14 | 101| %101:runinfo:: table with the run info data
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| 15 | 102| %102:events:: table with the image parameters
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| 16 | 103| %103:positions:: table with the source positions in the camera
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| 17 | 104| %105:zenith:: zenith angle in degrees
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| 18 | 105| %104:columns
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| 19 | 106| %105:estimator:: estimator for log10 energy
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| 20 |
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| 21 | WARNING:
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| 22 | Right now, we correlate the mean zenith angle of the data
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| 23 | file with the particle direction in the simulation!
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| 24 |
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| 25 | *************************************************************************** */
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| 26 |
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| 27 | WITH Table0 AS
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| 28 | (
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| 29 | SELECT
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| 30 | %105:columns -- this could be removed if we can join events via the same columns (without CorsikaNumResuse)
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| 31 | %104:zenith AS Theta,
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| 32 | Weight,
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| 33 | Size,
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| 34 | NumUsedPixels,
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| 35 | NumIslands,
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| 36 | Leakage1,
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| 37 | MeanX,
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| 38 | MeanY,
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| 39 | CosDelta,
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| 40 | SinDelta,
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| 41 | M3Long,
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| 42 | SlopeLong,
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| 43 | Width/Length AS WdivL,
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| 44 | PI()*Width*Length AS Area,
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| 45 | cosa*X - sina*Y AS PX,
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| 46 | cosa*Y + sina*X AS PY
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| 47 | FROM
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| 48 | %100:files
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| 49 | LEFT JOIN
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| 50 | %101:runinfo USING (FileId)
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| 51 | LEFT JOIN
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| 52 | %102:events USING (FileId) -- This could be replaced by a user uploaded temporary table
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| 53 | LEFT JOIN
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| 54 | %103:positions USING (FileId, EvtNumber)
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| 55 | CROSS JOIN
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| 56 | Wobble
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| 57 | WHERE
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| 58 | NumUsedPixels>5.5
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| 59 | AND
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| 60 | NumIslands<3.5
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| 61 | AND
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| 62 | Leakage1<0.1
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| 63 | ),
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| 64 |
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| 65 | Table1 AS
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| 66 | (
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| 67 | SELECT
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| 68 | %105:columns
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| 69 | Theta, Weight,
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| 70 | Size, CosDelta, SinDelta, M3Long, SlopeLong, Leakage1, WdivL,
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| 71 | MeanX - PX/1.02e0 AS DX,
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| 72 | MeanY - PY/1.02e0 AS DY
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| 73 | FROM
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| 74 | Table0
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| 75 | WHERE
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| 76 | Area < LOG10(Size)*898e0 - 1535e0
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| 77 | ),
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| 78 |
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| 79 | Table2 AS
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| 80 | (
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| 81 | SELECT
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| 82 | %105:columns
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| 83 | Theta, Weight,
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| 84 | Size, CosDelta, SinDelta, DX, DY, M3Long, SlopeLong, Leakage1, WdivL,
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| 85 | SQRT(DX*DX + DY*DY) AS Norm
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| 86 | FROM
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| 87 | Table1
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| 88 | ),
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| 89 |
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| 90 | Table3 AS
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| 91 | (
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| 92 | SELECT
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| 93 | %105:columns
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| 94 | Theta, Weight,
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| 95 | Size, M3Long, SlopeLong, Leakage1, WdivL, Norm,
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| 96 | LEAST(GREATEST((CosDelta*DY - SinDelta*DX)/Norm, -1), 1) AS LX,
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| 97 | SIGN(CosDelta*DX + SinDelta*DY) AS Sign
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| 98 | FROM
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| 99 | Table2
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| 100 | ),
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| 101 |
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| 102 | Table5 AS
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| 103 | (
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| 104 | SELECT
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| 105 | %105:columns
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| 106 | Theta, Weight,
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| 107 | Size, Leakage1, WdivL, LX,
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| 108 | Norm *0.0117193246260285378e0 AS Dist,
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| 109 | M3Long *Sign*0.0117193246260285378e0 AS M3L,
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| 110 | SlopeLong*Sign/0.0117193246260285378e0 AS Slope
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| 111 | FROM
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| 112 | Table3
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| 113 | ),
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| 114 |
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| 115 | Table6 AS
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| 116 | (
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| 117 | SELECT
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| 118 | %105:columns
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| 119 | Theta, Weight,
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| 120 | Size, WdivL, Dist, LX, M3L, Slope,
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| 121 | 1.39252e0 + 0.154247e0*Slope + 1.67972e0*(1-1/(1+4.86232e0*Leakage1)) AS Xi
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| 122 | FROM
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| 123 | Table5
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| 124 | ),
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| 125 |
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| 126 | Table7 AS
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| 127 | (
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| 128 | SELECT
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| 129 | %105:columns
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| 130 | Theta, Weight,
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| 131 | Size, Dist, LX,
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| 132 | IF (M3L<-0.07 OR (Dist-0.5e0)*7.2e0-Slope<0, -Xi, Xi) * (1-WdivL) AS Disp
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| 133 | FROM
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| 134 | Table6
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| 135 | )
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| 136 |
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| 137 | SELECT
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| 138 | %105:columns
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| 139 | Theta, Weight,
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| 140 | (Disp*Disp + Dist*Dist - 2*Disp*Dist*SQRT(1-LX*LX)) AS ThetaSq,
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| 141 | %106:estimator AS LogEnergyEst
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| 142 | FROM
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| 143 | Table7
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| 144 | HAVING
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| 145 | ThetaSq<0.024
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