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MC_MUONS.plot
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MC_MUONS.plot
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# BEGIN PLOT /MC_MUONS/muons_dR_
Title
=
$\
Delta
R
$
separation
between
muons
LegendXPos
=
0.10
LegendYPos
=
0.5
# END PLOT
# BEGIN PLOT /MC_MUONS/muons_dR_12
XLabel
=
$\
Delta
{
R
}(
\
text
{
$\
mu
$
1
,
$\
mu
$
2
})
$
YLabel
=
$\
text
{
d
}
\
sigma
/
\
text
{
d
}
\
Delta
{
R
}(
\
text
{
$\
mu
$
1
,
$\
mu
$
2
})
$
[
pb
]
# END PLOT
# BEGIN PLOT /MC_MUONS/muons_dR_13
XLabel
=
$\
Delta
{
R
}(
\
text
{
$\
mu
$
1
,
$\
mu
$
3
})
$
YLabel
=
$\
text
{
d
}
\
sigma
/
\
text
{
d
}
\
Delta
{
R
}(
\
text
{
$\
mu
$
1
,
$\
mu
$
3
})
$
[
pb
]
# END PLOT
# BEGIN PLOT /MC_MUONS/muons_dR_23
XLabel
=
$\
Delta
{
R
}(
\
text
{
$\
mu
$
2
,
$\
mu
$
3
})
$
YLabel
=
$\
text
{
d
}
\
sigma
/
\
text
{
d
}
\
Delta
{
R
}(
\
text
{
$\
mu
$
2
,
$\
mu
$
3
})
$
[
pb
]
# END PLOT
# BEGIN PLOT /MC_MUONS/muons_deta_
Title
=
Pseudorapidity
separation
between
muons
LegendYPos
=
0.5
LegendXPos
=
0.30
# END PLOT
# BEGIN PLOT /MC_MUONS/muons_deta_12
XLabel
=
$\
Delta
\
eta
(
\
text
{
$\
mu
$
1
,
$\
mu
$
2
})
$
YLabel
=
$\
text
{
d
}
\
sigma
/
\
text
{
d
}
\
Delta
\
eta
(
\
text
{
$\
mu
$
1
,
$\
mu
$
2
})
$
[
pb
]
# END PLOT
# BEGIN PLOT /MC_MUONS/muons_deta_13
XLabel
=
$\
Delta
\
eta
(
\
text
{
$\
mu
$
1
,
$\
mu
$
3
})
$
YLabel
=
$\
text
{
d
}
\
sigma
/
\
text
{
d
}
\
Delta
\
eta
(
\
text
{
$\
mu
$
1
,
$\
mu
$
3
})
$
[
pb
]
# END PLOT
# BEGIN PLOT /MC_MUONS/muons_deta_23
XLabel
=
$\
Delta
\
eta
(
\
text
{
$\
mu
$
2
,
$\
mu
$
3
})
$
YLabel
=
$\
text
{
d
}
\
sigma
/
\
text
{
d
}
\
Delta
\
eta
(
\
text
{
$\
mu
$
2
,
$\
mu
$
3
})
$
[
pb
]
# END PLOT
# BEGIN PLOT /MC_MUONS/muons_dphi_
Title
=
Pseudorapidity
separation
between
muons
LegendXPos
=
0.1
# END PLOT
# BEGIN PLOT /MC_MUONS/muons_dphi_12
XLabel
=
$\
Delta
\
phi
(
\
text
{
$\
mu
$
1
,
$\
mu
$
2
})
$
YLabel
=
$\
text
{
d
}
\
sigma
/
\
text
{
d
}
\
Delta
\
phi
(
\
text
{
$\
mu
$
1
,
$\
mu
$
2
})
$
[
pb
]
# END PLOT
# BEGIN PLOT /MC_MUONS/muons_dphi_13
XLabel
=
$\
Delta
\
phi
(
\
text
{
$\
mu
$
1
,
$\
mu
$
3
})
$
YLabel
=
$\
text
{
d
}
\
sigma
/
\
text
{
d
}
\
Delta
\
phi
(
\
text
{
$\
mu
$
1
,
$\
mu
$
3
})
$
[
pb
]
# END PLOT
# BEGIN PLOT /MC_MUONS/muons_dphi_23
XLabel
=
$\
Delta
\
phi
(
\
text
{
$\
mu
$
2
,
$\
mu
$
3
})
$
YLabel
=
$\
text
{
d
}
\
sigma
/
\
text
{
d
}
\
Delta
\
phi
(
\
text
{
$\
mu
$
2
,
$\
mu
$
3
})
$
[
pb
]
# END PLOT
# BEGIN PLOT /MC_MUONS/muon_eta_1
Title
=
Pseudorapidity
of
leading
muon
XLabel
=
$\
eta
(
\
text
{
$\
mu
$
1
})
$
YLabel
=
$\
text
{
d
}
\
sigma
/
\
text
{
d
}
\
eta
(
\
text
{
$\
mu
$
1
})
$
[
pb
]
LegendYPos
=
0.5
LegendXPos
=
0.30
# END PLOT
# BEGIN PLOT /MC_MUONS/muon_eta_2
Title
=
Pseudorapidity
of
second
muon
XLabel
=
$\
eta
(
\
text
{
$\
mu
$
2
})
$
YLabel
=
$\
text
{
d
}
\
sigma
/
\
text
{
d
}
\
eta
(
\
text
{
$\
mu
$
2
})
$
[
pb
]
LegendYPos
=
0.5
LegendXPos
=
0.30
# END PLOT
# BEGIN PLOT /MC_MUONS/muon_eta_3
Title
=
Pseudorapidity
of
third
muon
XLabel
=
$\
eta
(
\
text
{
$\
mu
$
3
})
$
YLabel
=
$\
text
{
d
}
\
sigma
/
\
text
{
d
}
\
eta
(
\
text
{
$\
mu
$
3
})
$
[
pb
]
LegendYPos
=
0.5
LegendXPos
=
0.30
# END PLOT
# BEGIN PLOT /MC_MUONS/muon_eta_4
Title
=
Pseudorapidity
of
fourth
muon
XLabel
=
$\
eta
(
\
text
{
$\
mu
$
4
})
$
YLabel
=
$\
text
{
d
}
\
sigma
/
\
text
{
d
}
\
eta
(
\
text
{
$\
mu
$
4
})
$
[
pb
]
LegendYPos
=
0.5
LegendXPos
=
0.30
# END PLOT
# BEGIN PLOT /MC_MUONS/muon_eta_pmratio_1
Title
=
Pseudorapidity
$
+/-
$
ratio
of
first
muon
XLabel
=
$
|
\
eta
(
\
text
{
$\
mu
$
1
}
|
$
YLabel
=
$\
eta
(
\
text
{
$\
mu
$
1
})
_
+/
\
eta
(
\
text
{
$\
mu
$
1
})
_
-
$
# END PLOT
# BEGIN PLOT /MC_MUONS/muon_eta_pmratio_2
Title
=
Pseudorapidity
$
+/-
$
ratio
of
second
muon
XLabel
=
$
|
\
eta
(
\
text
{
$\
mu
$
2
}
|
$
YLabel
=
$\
eta
(
\
text
{
$\
mu
$
2
})
_
+/
\
eta
(
\
text
{
$\
mu
$
2
})
_
-
$
# END PLOT
# BEGIN PLOT /MC_MUONS/muon_eta_pmratio_3
Title
=
Pseudorapidity
$
+/-
$
ratio
of
third
muon
XLabel
=
$
|
\
eta
(
\
text
{
$\
mu
$
3
}
|
$
YLabel
=
$\
eta
(
\
text
{
$\
mu
$
3
})
_
+/
\
eta
(
\
text
{
$\
mu
$
3
})
_
-
$
# END PLOT
# BEGIN PLOT /MC_MUONS/muon_eta_pmratio_4
Title
=
Pseudorapidity
$
+/-
$
ratio
of
fourth
muon
XLabel
=
$
|
\
eta
(
\
text
{
$\
mu
$
4
}
|
$
YLabel
=
$\
eta
(
\
text
{
$\
mu
$
4
})
_
+/
\
eta
(
\
text
{
$\
mu
$
4
})
_
-
$
# END PLOT
# BEGIN PLOT /MC_MUONS/muon_y_1
Title
=
Rapidity
of
first
muon
XLabel
=
$
y
(
\
text
{
$\
mu
$
1
})
$
YLabel
=
$\
text
{
d
}
\
sigma
/
\
text
{
d
}
y
(
\
text
{
$\
mu
$
1
})
$
[
pb
]
# END PLOT
# BEGIN PLOT /MC_MUONS/muon_y_2
Title
=
Rapidity
of
second
muon
XLabel
=
$
y
(
\
text
{
$\
mu
$
2
})
$
YLabel
=
$\
text
{
d
}
\
sigma
/
\
text
{
d
}
y
(
\
text
{
$\
mu
$
2
})
$
[
pb
]
# END PLOT
# BEGIN PLOT /MC_MUONS/muon_y_3
Title
=
Rapidity
of
third
muon
XLabel
=
$
y
(
\
text
{
$\
mu
$
3
})
$
YLabel
=
$\
text
{
d
}
\
sigma
/
\
text
{
d
}
y
(
\
text
{
$\
mu
$
3
})
$
[
pb
]
# END PLOT
# BEGIN PLOT /MC_MUONS/muon_y_4
Title
=
Rapidity
of
fourth
muon
XLabel
=
$
y
(
\
text
{
$\
mu
$
4
})
$
YLabel
=
$\
text
{
d
}
\
sigma
/
\
text
{
d
}
y
(
\
text
{
$\
mu
$
4
})
$
[
pb
]
# END PLOT
# BEGIN PLOT /MC_MUONS/muon_y_pmratio_1
Title
=
Rapidity
$
+/-
$
ratio
of
first
muon
XLabel
=
$
|
y
(
\
text
{
$\
mu
$
1
}
|
$
YLabel
=
$
y
(
\
text
{
$\
mu
$
1
})
_
+/
y
(
\
text
{
$\
mu
$
1
})
_
-
$
# END PLOT
# BEGIN PLOT /MC_MUONS/muon_y_pmratio_2
Title
=
Rapidity
$
+/-
$
ratio
of
second
muon
XLabel
=
$
|
y
(
\
text
{
$\
mu
$
2
}
|
$
YLabel
=
$
y
(
\
text
{
$\
mu
$
2
})
_
+/
y
(
\
text
{
$\
mu
$
2
})
_
-
$
# END PLOT
# BEGIN PLOT /MC_MUONS/muon_y_pmratio_3
Title
=
Rapidity
$
+/-
$
ratio
of
third
muon
XLabel
=
$
|
y
(
\
text
{
$\
mu
$
3
}
|
$
YLabel
=
$
y
(
\
text
{
$\
mu
$
3
})
_
+/
y
(
\
text
{
$\
mu
$
3
})
_
-
$
# END PLOT
# BEGIN PLOT /MC_MUONS/muon_y_pmratio_4
Title
=
Rapidity
$
+/-
$
ratio
of
fourth
muon
XLabel
=
$
|
y
(
\
text
{
$\
mu
$
4
}
|
$
YLabel
=
$
y
(
\
text
{
$\
mu
$
4
})
_
+/
y
(
\
text
{
$\
mu
$
4
})
_
-
$
# END PLOT
# BEGIN PLOT /MC_MUONS/muon_multi_exclusive
Title
=
Exclusive
muon
multiplicity
XLabel
=
$
N_
{
\
text
{
muon
}}
$
YLabel
=
$\
sigma
(
N_
{
\
text
{
muon
}})
$
[
pb
]
XMajorTickMarks
=
10
XMinorTickMarks
=
0
ErrorBands
=
1
# END PLOT
# BEGIN PLOT /MC_MUONS/muon_multi_exclusive_prompt
Title
=
Exclusive
prompt
muon
multiplicity
XLabel
=
$
N_
{
\
text
{
muon
}}
$
YLabel
=
$\
sigma
(
N_
{
\
text
{
muon
}})
$
[
pb
]
XMajorTickMarks
=
10
XMinorTickMarks
=
0
ErrorBands
=
1
# END PLOT
# BEGIN PLOT /MC_MUONS/muon_multi_inclusive
Title
=
Inclusive
muon
multiplicity
XLabel
=
$
N_
{
\
text
{
muon
}}
$
YLabel
=
$\
sigma
(
\
geq
N_
{
\
text
{
muon
}})
$
[
pb
]
XMajorTickMarks
=
10
XMinorTickMarks
=
0
ErrorBands
=
1
# END PLOT
# BEGIN PLOT /MC_MUONS/muon_multi_inclusive_prompt
Title
=
Inclusive
prompt
muon
multiplicity
XLabel
=
$
N_
{
\
text
{
muon
}}
$
YLabel
=
$\
sigma
(
\
geq
N_
{
\
text
{
muon
}})
$
[
pb
]
XMajorTickMarks
=
10
XMinorTickMarks
=
0
ErrorBands
=
1
# END PLOT
# BEGIN PLOT /MC_MUONS/muon_multi_ratio
Title
=
Ratio
of
muon
multiplicity
XLabel
=
$
N_
{
\
text
{
muon
}}
$
YLabel
=
$\
sigma
(
\
geq
N_
{
\
text
{
muon
}})
/
\
sigma
(
\
geq
N_
{
\
text
{
muon
}}
-1
)
$
XMajorTickMarks
=
10
XMinorTickMarks
=
0
LogY
=
0
ErrorBands
=
1
# END PLOT
# BEGIN PLOT /MC_MUONS/muon_multi_ratio_prompt
Title
=
Ratio
of
prompt
muon
multiplicity
XLabel
=
$
N_
{
\
text
{
muon
}}
$
YLabel
=
$\
sigma
(
\
geq
N_
{
\
text
{
muon
}})
/
\
sigma
(
\
geq
N_
{
\
text
{
muon
}}
-1
)
$
XMajorTickMarks
=
10
XMinorTickMarks
=
0
LogY
=
0
ErrorBands
=
1
# END PLOT
# BEGIN PLOT /MC_MUONS/muon_pt_1
Title
=
Transverse
momentum
of
leading
muon
XLabel
=
$
p_
\
perp
(
\
text
{
$\
mu
$
1
})
$
[
GeV
]
YLabel
=
$\
text
{
d
}
\
sigma
/
\
text
{
d
}
p_
\
perp
(
\
text
{
$\
mu
$
1
})
$
[
pb
/
GeV
]
LogX
=
1
LegendXPos
=
0.05
LegendYPos
=
0.5
XMin
=
20.0
# END PLOT
# BEGIN PLOT /MC_MUONS/muon_pt_2
Title
=
Transverse
momentum
of
second
muon
XLabel
=
$
p_
\
perp
(
\
text
{
$\
mu
$
2
})
$
[
GeV
]
YLabel
=
$\
text
{
d
}
\
sigma
/
\
text
{
d
}
p_
\
perp
(
\
text
{
$\
mu
$
2
})
$
[
pb
/
GeV
]
LogX
=
1
LegendXPos
=
0.05
LegendYPos
=
0.5
XMin
=
20.0
# END PLOT
# BEGIN PLOT /MC_MUONS/muon_pt_3
Title
=
Transverse
momentum
of
third
muon
XLabel
=
$
p_
\
perp
(
\
text
{
$\
mu
$
3
})
$
[
GeV
]
YLabel
=
$\
text
{
d
}
\
sigma
/
\
text
{
d
}
p_
\
perp
(
\
text
{
$\
mu
$
3
})
$
[
pb
/
GeV
]
LogX
=
1
LegendXPos
=
0.05
LegendYPos
=
0.5
XMin
=
20.0
# END PLOT
# BEGIN PLOT /MC_MUONS/muon_pt_4
Title
=
Transverse
momentum
of
fourth
muon
XLabel
=
$
p_
\
perp
(
\
text
{
$\
mu
$
4
})
$
[
GeV
]
YLabel
=
$\
text
{
d
}
\
sigma
/
\
text
{
d
}
p_
\
perp
(
\
text
{
$\
mu
$
4
})
$
[
pb
/
GeV
]
LogX
=
1
LegendXPos
=
0.05
LegendYPos
=
0.5
XMin
=
20.0
# END PLOT
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MC_MUONS.plot (6 KB)
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