Page Menu
Home
HEPForge
Search
Configure Global Search
Log In
Files
F11222096
tev-SM_XS-fit-functions_comp2tables_ggH.ps
No One
Temporary
Actions
Download File
Edit File
Delete File
View Transforms
Subscribe
Mute Notifications
Award Token
Flag For Later
Size
29 KB
Subscribers
None
tev-SM_XS-fit-functions_comp2tables_ggH.ps
View Options
%!PS-Adobe-2.0
%%Title: tev-SM_XS-fit-functions_comp2tables_ggH.ps
%%Creator: gnuplot 4.2 patchlevel 3
%%CreationDate: Tue Apr 28 11:11:59 2009
%%DocumentFonts: (atend)
%%BoundingBox: 50 50 554 770
%%Orientation: Portrait
%%Pages: (atend)
%%EndComments
%%BeginProlog
/gnudict
256
dict
def
gnudict
begin
%
% The following 6 true/false flags may be edited by hand if required
% The unit line width may also be changed
%
/Color
true
def
/Blacktext
false
def
/Solid
true
def
/Dashlength
1
def
/Landscape
false
def
/Level1
false
def
/Rounded
false
def
/TransparentPatterns
false
def
/gnulinewidth
5.000
def
/userlinewidth
gnulinewidth
def
%
/vshift
-46
def
/dl1
{
10.0
Dashlength
mul
mul
Rounded
{
currentlinewidth
0.75
mul
sub
dup
0
le
{
pop
0.01
}
if
}
if
}
def
/dl2
{
10.0
Dashlength
mul
mul
Rounded
{
currentlinewidth
0.75
mul
add
}
if
}
def
/hpt_
31.5
def
/vpt_
31.5
def
/hpt
hpt_
def
/vpt
vpt_
def
Level1
{}
{
/SDict
10
dict
def
systemdict
/pdfmark
known
not
{
userdict
/pdfmark
systemdict
/cleartomark
get
put
}
if
SDict
begin
[
/Title
(tev-SM_XS-fit-functions_comp2tables_ggH.ps)
/Subject
(gnuplot plot)
/Creator
(gnuplot 4.2 patchlevel 3 )
/Author
(Karina Williams)
% /Producer (gnuplot)
% /Keywords ()
/CreationDate
(Tue Apr 28 11:11:59 2009)
/DOCINFO
pdfmark
end
}
ifelse
%
% Gnuplot Prolog Version 4.2 (November 2007)
%
/M
{
moveto
}
bind
def
/L
{
lineto
}
bind
def
/R
{
rmoveto
}
bind
def
/V
{
rlineto
}
bind
def
/N
{
newpath
moveto
}
bind
def
/Z
{
closepath
}
bind
def
/C
{
setrgbcolor
}
bind
def
/f
{
rlineto
fill
}
bind
def
/Gshow
{
show
}
def
% May be redefined later in the file to support UTF-8
/vpt2
vpt
2
mul
def
/hpt2
hpt
2
mul
def
/Lshow
{
currentpoint
stroke
M
0
vshift
R
Blacktext
{
gsave
0
setgray
show
grestore
}
{
show
}
ifelse
}
def
/Rshow
{
currentpoint
stroke
M
dup
stringwidth
pop
neg
vshift
R
Blacktext
{
gsave
0
setgray
show
grestore
}
{
show
}
ifelse
}
def
/Cshow
{
currentpoint
stroke
M
dup
stringwidth
pop
-2
div
vshift
R
Blacktext
{
gsave
0
setgray
show
grestore
}
{
show
}
ifelse
}
def
/UP
{
dup
vpt_
mul
/vpt
exch
def
hpt_
mul
/hpt
exch
def
/hpt2
hpt
2
mul
def
/vpt2
vpt
2
mul
def
}
def
/DL
{
Color
{
setrgbcolor
Solid
{
pop
[]}
if
0
setdash
}
{
pop
pop
pop
0
setgray
Solid
{
pop
[]}
if
0
setdash
}
ifelse
}
def
/BL
{
stroke
userlinewidth
2
mul
setlinewidth
Rounded
{
1
setlinejoin
1
setlinecap
}
if
}
def
/AL
{
stroke
userlinewidth
2
div
setlinewidth
Rounded
{
1
setlinejoin
1
setlinecap
}
if
}
def
/UL
{
dup
gnulinewidth
mul
/userlinewidth
exch
def
dup
1
lt
{
pop
1
}
if
10
mul
/udl
exch
def
}
def
/PL
{
stroke
userlinewidth
setlinewidth
Rounded
{
1
setlinejoin
1
setlinecap
}
if
}
def
% Default Line colors
/LCw
{
1
1
1
}
def
/LCb
{
0
0
0
}
def
/LCa
{
0
0
0
}
def
/LC0
{
1
0
0
}
def
/LC1
{
0
1
0
}
def
/LC2
{
0
0
1
}
def
/LC3
{
1
0
1
}
def
/LC4
{
0
1
1
}
def
/LC5
{
1
1
0
}
def
/LC6
{
0
0
0
}
def
/LC7
{
1
0.3
0
}
def
/LC8
{
0.5
0.5
0.5
}
def
% Default Line Types
/LTw
{
PL
[]
1
setgray
}
def
/LTb
{
BL
[]
LCb
DL
}
def
/LTa
{
AL
[
1
udl
mul
2
udl
mul
]
0
setdash
LCa
setrgbcolor
}
def
/LT0
{
PL
[]
LC0
DL
}
def
/LT1
{
PL
[
4
dl1
2
dl2
]
LC1
DL
}
def
/LT2
{
PL
[
2
dl1
3
dl2
]
LC2
DL
}
def
/LT3
{
PL
[
1
dl1
1.5
dl2
]
LC3
DL
}
def
/LT4
{
PL
[
6
dl1
2
dl2
1
dl1
2
dl2
]
LC4
DL
}
def
/LT5
{
PL
[
3
dl1
3
dl2
1
dl1
3
dl2
]
LC5
DL
}
def
/LT6
{
PL
[
2
dl1
2
dl2
2
dl1
6
dl2
]
LC6
DL
}
def
/LT7
{
PL
[
1
dl1
2
dl2
6
dl1
2
dl2
1
dl1
2
dl2
]
LC7
DL
}
def
/LT8
{
PL
[
2
dl1
2
dl2
2
dl1
2
dl2
2
dl1
2
dl2
2
dl1
4
dl2
]
LC8
DL
}
def
/Pnt
{
stroke
[]
0
setdash
gsave
1
setlinecap
M
0
0
V
stroke
grestore
}
def
/Dia
{
stroke
[]
0
setdash
2
copy
vpt
add
M
hpt
neg
vpt
neg
V
hpt
vpt
neg
V
hpt
vpt
V
hpt
neg
vpt
V
closepath
stroke
Pnt
}
def
/Pls
{
stroke
[]
0
setdash
vpt
sub
M
0
vpt2
V
currentpoint
stroke
M
hpt
neg
vpt
neg
R
hpt2
0
V
stroke
}
def
/Box
{
stroke
[]
0
setdash
2
copy
exch
hpt
sub
exch
vpt
add
M
0
vpt2
neg
V
hpt2
0
V
0
vpt2
V
hpt2
neg
0
V
closepath
stroke
Pnt
}
def
/Crs
{
stroke
[]
0
setdash
exch
hpt
sub
exch
vpt
add
M
hpt2
vpt2
neg
V
currentpoint
stroke
M
hpt2
neg
0
R
hpt2
vpt2
V
stroke
}
def
/TriU
{
stroke
[]
0
setdash
2
copy
vpt
1.12
mul
add
M
hpt
neg
vpt
-1.62
mul
V
hpt
2
mul
0
V
hpt
neg
vpt
1.62
mul
V
closepath
stroke
Pnt
}
def
/Star
{
2
copy
Pls
Crs
}
def
/BoxF
{
stroke
[]
0
setdash
exch
hpt
sub
exch
vpt
add
M
0
vpt2
neg
V
hpt2
0
V
0
vpt2
V
hpt2
neg
0
V
closepath
fill
}
def
/TriUF
{
stroke
[]
0
setdash
vpt
1.12
mul
add
M
hpt
neg
vpt
-1.62
mul
V
hpt
2
mul
0
V
hpt
neg
vpt
1.62
mul
V
closepath
fill
}
def
/TriD
{
stroke
[]
0
setdash
2
copy
vpt
1.12
mul
sub
M
hpt
neg
vpt
1.62
mul
V
hpt
2
mul
0
V
hpt
neg
vpt
-1.62
mul
V
closepath
stroke
Pnt
}
def
/TriDF
{
stroke
[]
0
setdash
vpt
1.12
mul
sub
M
hpt
neg
vpt
1.62
mul
V
hpt
2
mul
0
V
hpt
neg
vpt
-1.62
mul
V
closepath
fill
}
def
/DiaF
{
stroke
[]
0
setdash
vpt
add
M
hpt
neg
vpt
neg
V
hpt
vpt
neg
V
hpt
vpt
V
hpt
neg
vpt
V
closepath
fill
}
def
/Pent
{
stroke
[]
0
setdash
2
copy
gsave
translate
0
hpt
M
4
{
72
rotate
0
hpt
L
}
repeat
closepath
stroke
grestore
Pnt
}
def
/PentF
{
stroke
[]
0
setdash
gsave
translate
0
hpt
M
4
{
72
rotate
0
hpt
L
}
repeat
closepath
fill
grestore
}
def
/Circle
{
stroke
[]
0
setdash
2
copy
hpt
0
360
arc
stroke
Pnt
}
def
/CircleF
{
stroke
[]
0
setdash
hpt
0
360
arc
fill
}
def
/C0
{
BL
[]
0
setdash
2
copy
moveto
vpt
90
450
arc
}
bind
def
/C1
{
BL
[]
0
setdash
2
copy
moveto
2
copy
vpt
0
90
arc
closepath
fill
vpt
0
360
arc
closepath
}
bind
def
/C2
{
BL
[]
0
setdash
2
copy
moveto
2
copy
vpt
90
180
arc
closepath
fill
vpt
0
360
arc
closepath
}
bind
def
/C3
{
BL
[]
0
setdash
2
copy
moveto
2
copy
vpt
0
180
arc
closepath
fill
vpt
0
360
arc
closepath
}
bind
def
/C4
{
BL
[]
0
setdash
2
copy
moveto
2
copy
vpt
180
270
arc
closepath
fill
vpt
0
360
arc
closepath
}
bind
def
/C5
{
BL
[]
0
setdash
2
copy
moveto
2
copy
vpt
0
90
arc
2
copy
moveto
2
copy
vpt
180
270
arc
closepath
fill
vpt
0
360
arc
}
bind
def
/C6
{
BL
[]
0
setdash
2
copy
moveto
2
copy
vpt
90
270
arc
closepath
fill
vpt
0
360
arc
closepath
}
bind
def
/C7
{
BL
[]
0
setdash
2
copy
moveto
2
copy
vpt
0
270
arc
closepath
fill
vpt
0
360
arc
closepath
}
bind
def
/C8
{
BL
[]
0
setdash
2
copy
moveto
2
copy
vpt
270
360
arc
closepath
fill
vpt
0
360
arc
closepath
}
bind
def
/C9
{
BL
[]
0
setdash
2
copy
moveto
2
copy
vpt
270
450
arc
closepath
fill
vpt
0
360
arc
closepath
}
bind
def
/C10
{
BL
[]
0
setdash
2
copy
2
copy
moveto
vpt
270
360
arc
closepath
fill
2
copy
moveto
2
copy
vpt
90
180
arc
closepath
fill
vpt
0
360
arc
closepath
}
bind
def
/C11
{
BL
[]
0
setdash
2
copy
moveto
2
copy
vpt
0
180
arc
closepath
fill
2
copy
moveto
2
copy
vpt
270
360
arc
closepath
fill
vpt
0
360
arc
closepath
}
bind
def
/C12
{
BL
[]
0
setdash
2
copy
moveto
2
copy
vpt
180
360
arc
closepath
fill
vpt
0
360
arc
closepath
}
bind
def
/C13
{
BL
[]
0
setdash
2
copy
moveto
2
copy
vpt
0
90
arc
closepath
fill
2
copy
moveto
2
copy
vpt
180
360
arc
closepath
fill
vpt
0
360
arc
closepath
}
bind
def
/C14
{
BL
[]
0
setdash
2
copy
moveto
2
copy
vpt
90
360
arc
closepath
fill
vpt
0
360
arc
}
bind
def
/C15
{
BL
[]
0
setdash
2
copy
vpt
0
360
arc
closepath
fill
vpt
0
360
arc
closepath
}
bind
def
/Rec
{
newpath
4
2
roll
moveto
1
index
0
rlineto
0
exch
rlineto
neg
0
rlineto
closepath
}
bind
def
/Square
{
dup
Rec
}
bind
def
/Bsquare
{
vpt
sub
exch
vpt
sub
exch
vpt2
Square
}
bind
def
/S0
{
BL
[]
0
setdash
2
copy
moveto
0
vpt
rlineto
BL
Bsquare
}
bind
def
/S1
{
BL
[]
0
setdash
2
copy
vpt
Square
fill
Bsquare
}
bind
def
/S2
{
BL
[]
0
setdash
2
copy
exch
vpt
sub
exch
vpt
Square
fill
Bsquare
}
bind
def
/S3
{
BL
[]
0
setdash
2
copy
exch
vpt
sub
exch
vpt2
vpt
Rec
fill
Bsquare
}
bind
def
/S4
{
BL
[]
0
setdash
2
copy
exch
vpt
sub
exch
vpt
sub
vpt
Square
fill
Bsquare
}
bind
def
/S5
{
BL
[]
0
setdash
2
copy
2
copy
vpt
Square
fill
exch
vpt
sub
exch
vpt
sub
vpt
Square
fill
Bsquare
}
bind
def
/S6
{
BL
[]
0
setdash
2
copy
exch
vpt
sub
exch
vpt
sub
vpt
vpt2
Rec
fill
Bsquare
}
bind
def
/S7
{
BL
[]
0
setdash
2
copy
exch
vpt
sub
exch
vpt
sub
vpt
vpt2
Rec
fill
2
copy
vpt
Square
fill
Bsquare
}
bind
def
/S8
{
BL
[]
0
setdash
2
copy
vpt
sub
vpt
Square
fill
Bsquare
}
bind
def
/S9
{
BL
[]
0
setdash
2
copy
vpt
sub
vpt
vpt2
Rec
fill
Bsquare
}
bind
def
/S10
{
BL
[]
0
setdash
2
copy
vpt
sub
vpt
Square
fill
2
copy
exch
vpt
sub
exch
vpt
Square
fill
Bsquare
}
bind
def
/S11
{
BL
[]
0
setdash
2
copy
vpt
sub
vpt
Square
fill
2
copy
exch
vpt
sub
exch
vpt2
vpt
Rec
fill
Bsquare
}
bind
def
/S12
{
BL
[]
0
setdash
2
copy
exch
vpt
sub
exch
vpt
sub
vpt2
vpt
Rec
fill
Bsquare
}
bind
def
/S13
{
BL
[]
0
setdash
2
copy
exch
vpt
sub
exch
vpt
sub
vpt2
vpt
Rec
fill
2
copy
vpt
Square
fill
Bsquare
}
bind
def
/S14
{
BL
[]
0
setdash
2
copy
exch
vpt
sub
exch
vpt
sub
vpt2
vpt
Rec
fill
2
copy
exch
vpt
sub
exch
vpt
Square
fill
Bsquare
}
bind
def
/S15
{
BL
[]
0
setdash
2
copy
Bsquare
fill
Bsquare
}
bind
def
/D0
{
gsave
translate
45
rotate
0
0
S0
stroke
grestore
}
bind
def
/D1
{
gsave
translate
45
rotate
0
0
S1
stroke
grestore
}
bind
def
/D2
{
gsave
translate
45
rotate
0
0
S2
stroke
grestore
}
bind
def
/D3
{
gsave
translate
45
rotate
0
0
S3
stroke
grestore
}
bind
def
/D4
{
gsave
translate
45
rotate
0
0
S4
stroke
grestore
}
bind
def
/D5
{
gsave
translate
45
rotate
0
0
S5
stroke
grestore
}
bind
def
/D6
{
gsave
translate
45
rotate
0
0
S6
stroke
grestore
}
bind
def
/D7
{
gsave
translate
45
rotate
0
0
S7
stroke
grestore
}
bind
def
/D8
{
gsave
translate
45
rotate
0
0
S8
stroke
grestore
}
bind
def
/D9
{
gsave
translate
45
rotate
0
0
S9
stroke
grestore
}
bind
def
/D10
{
gsave
translate
45
rotate
0
0
S10
stroke
grestore
}
bind
def
/D11
{
gsave
translate
45
rotate
0
0
S11
stroke
grestore
}
bind
def
/D12
{
gsave
translate
45
rotate
0
0
S12
stroke
grestore
}
bind
def
/D13
{
gsave
translate
45
rotate
0
0
S13
stroke
grestore
}
bind
def
/D14
{
gsave
translate
45
rotate
0
0
S14
stroke
grestore
}
bind
def
/D15
{
gsave
translate
45
rotate
0
0
S15
stroke
grestore
}
bind
def
/DiaE
{
stroke
[]
0
setdash
vpt
add
M
hpt
neg
vpt
neg
V
hpt
vpt
neg
V
hpt
vpt
V
hpt
neg
vpt
V
closepath
stroke
}
def
/BoxE
{
stroke
[]
0
setdash
exch
hpt
sub
exch
vpt
add
M
0
vpt2
neg
V
hpt2
0
V
0
vpt2
V
hpt2
neg
0
V
closepath
stroke
}
def
/TriUE
{
stroke
[]
0
setdash
vpt
1.12
mul
add
M
hpt
neg
vpt
-1.62
mul
V
hpt
2
mul
0
V
hpt
neg
vpt
1.62
mul
V
closepath
stroke
}
def
/TriDE
{
stroke
[]
0
setdash
vpt
1.12
mul
sub
M
hpt
neg
vpt
1.62
mul
V
hpt
2
mul
0
V
hpt
neg
vpt
-1.62
mul
V
closepath
stroke
}
def
/PentE
{
stroke
[]
0
setdash
gsave
translate
0
hpt
M
4
{
72
rotate
0
hpt
L
}
repeat
closepath
stroke
grestore
}
def
/CircE
{
stroke
[]
0
setdash
hpt
0
360
arc
stroke
}
def
/Opaque
{
gsave
closepath
1
setgray
fill
grestore
0
setgray
closepath
}
def
/DiaW
{
stroke
[]
0
setdash
vpt
add
M
hpt
neg
vpt
neg
V
hpt
vpt
neg
V
hpt
vpt
V
hpt
neg
vpt
V
Opaque
stroke
}
def
/BoxW
{
stroke
[]
0
setdash
exch
hpt
sub
exch
vpt
add
M
0
vpt2
neg
V
hpt2
0
V
0
vpt2
V
hpt2
neg
0
V
Opaque
stroke
}
def
/TriUW
{
stroke
[]
0
setdash
vpt
1.12
mul
add
M
hpt
neg
vpt
-1.62
mul
V
hpt
2
mul
0
V
hpt
neg
vpt
1.62
mul
V
Opaque
stroke
}
def
/TriDW
{
stroke
[]
0
setdash
vpt
1.12
mul
sub
M
hpt
neg
vpt
1.62
mul
V
hpt
2
mul
0
V
hpt
neg
vpt
-1.62
mul
V
Opaque
stroke
}
def
/PentW
{
stroke
[]
0
setdash
gsave
translate
0
hpt
M
4
{
72
rotate
0
hpt
L
}
repeat
Opaque
stroke
grestore
}
def
/CircW
{
stroke
[]
0
setdash
hpt
0
360
arc
Opaque
stroke
}
def
/BoxFill
{
gsave
Rec
1
setgray
fill
grestore
}
def
/Density
{
/Fillden
exch
def
currentrgbcolor
/ColB
exch
def
/ColG
exch
def
/ColR
exch
def
/ColR
ColR
Fillden
mul
Fillden
sub
1
add
def
/ColG
ColG
Fillden
mul
Fillden
sub
1
add
def
/ColB
ColB
Fillden
mul
Fillden
sub
1
add
def
ColR
ColG
ColB
setrgbcolor
}
def
/BoxColFill
{
gsave
Rec
PolyFill
}
def
/PolyFill
{
gsave
Density
fill
grestore
grestore
}
def
/h
{
rlineto
rlineto
rlineto
gsave
closepath
fill
grestore
}
bind
def
%
% PostScript Level 1 Pattern Fill routine for rectangles
% Usage: x y w h s a XX PatternFill
% x,y = lower left corner of box to be filled
% w,h = width and height of box
% a = angle in degrees between lines and x-axis
% XX = 0/1 for no/yes cross-hatch
%
/PatternFill
{
gsave
/PFa
[
9
2
roll
]
def
PFa
0
get
PFa
2
get
2
div
add
PFa
1
get
PFa
3
get
2
div
add
translate
PFa
2
get
-2
div
PFa
3
get
-2
div
PFa
2
get
PFa
3
get
Rec
gsave
1
setgray
fill
grestore
clip
currentlinewidth
0.5
mul
setlinewidth
/PFs
PFa
2
get
dup
mul
PFa
3
get
dup
mul
add
sqrt
def
0
0
M
PFa
5
get
rotate
PFs
-2
div
dup
translate
0
1
PFs
PFa
4
get
div
1
add
floor
cvi
{
PFa
4
get
mul
0
M
0
PFs
V
}
for
0
PFa
6
get
ne
{
0
1
PFs
PFa
4
get
div
1
add
floor
cvi
{
PFa
4
get
mul
0
2
1
roll
M
PFs
0
V
}
for
}
if
stroke
grestore
}
def
%
/languagelevel
where
{
pop
languagelevel
}
{
1
}
ifelse
2
lt
{
/InterpretLevel1
true
def
}
{
/InterpretLevel1
Level1
def
}
ifelse
%
% PostScript level 2 pattern fill definitions
%
/Level2PatternFill
{
/Tile8x8
{
/PaintType
2
/PatternType
1
/TilingType
1
/BBox
[
0
0
8
8
]
/XStep
8
/YStep
8
}
bind
def
/KeepColor
{
currentrgbcolor
[
/Pattern
/DeviceRGB
]
setcolorspace
}
bind
def
<<
Tile8x8
/PaintProc
{
0.5
setlinewidth
pop
0
0
M
8
8
L
0
8
M
8
0
L
stroke
}
>>
matrix
makepattern
/Pat1
exch
def
<<
Tile8x8
/PaintProc
{
0.5
setlinewidth
pop
0
0
M
8
8
L
0
8
M
8
0
L
stroke
0
4
M
4
8
L
8
4
L
4
0
L
0
4
L
stroke
}
>>
matrix
makepattern
/Pat2
exch
def
<<
Tile8x8
/PaintProc
{
0.5
setlinewidth
pop
0
0
M
0
8
L
8
8
L
8
0
L
0
0
L
fill
}
>>
matrix
makepattern
/Pat3
exch
def
<<
Tile8x8
/PaintProc
{
0.5
setlinewidth
pop
-4
8
M
8
-4
L
0
12
M
12
0
L
stroke
}
>>
matrix
makepattern
/Pat4
exch
def
<<
Tile8x8
/PaintProc
{
0.5
setlinewidth
pop
-4
0
M
8
12
L
0
-4
M
12
8
L
stroke
}
>>
matrix
makepattern
/Pat5
exch
def
<<
Tile8x8
/PaintProc
{
0.5
setlinewidth
pop
-2
8
M
4
-4
L
0
12
M
8
-4
L
4
12
M
10
0
L
stroke
}
>>
matrix
makepattern
/Pat6
exch
def
<<
Tile8x8
/PaintProc
{
0.5
setlinewidth
pop
-2
0
M
4
12
L
0
-4
M
8
12
L
4
-4
M
10
8
L
stroke
}
>>
matrix
makepattern
/Pat7
exch
def
<<
Tile8x8
/PaintProc
{
0.5
setlinewidth
pop
8
-2
M
-4
4
L
12
0
M
-4
8
L
12
4
M
0
10
L
stroke
}
>>
matrix
makepattern
/Pat8
exch
def
<<
Tile8x8
/PaintProc
{
0.5
setlinewidth
pop
0
-2
M
12
4
L
-4
0
M
12
8
L
-4
4
M
8
10
L
stroke
}
>>
matrix
makepattern
/Pat9
exch
def
/Pattern1
{
PatternBgnd
KeepColor
Pat1
setpattern
}
bind
def
/Pattern2
{
PatternBgnd
KeepColor
Pat2
setpattern
}
bind
def
/Pattern3
{
PatternBgnd
KeepColor
Pat3
setpattern
}
bind
def
/Pattern4
{
PatternBgnd
KeepColor
Landscape
{
Pat5
}
{
Pat4
}
ifelse
setpattern
}
bind
def
/Pattern5
{
PatternBgnd
KeepColor
Landscape
{
Pat4
}
{
Pat5
}
ifelse
setpattern
}
bind
def
/Pattern6
{
PatternBgnd
KeepColor
Landscape
{
Pat9
}
{
Pat6
}
ifelse
setpattern
}
bind
def
/Pattern7
{
PatternBgnd
KeepColor
Landscape
{
Pat8
}
{
Pat7
}
ifelse
setpattern
}
bind
def
}
def
%
%
%End of PostScript Level 2 code
%
/PatternBgnd
{
TransparentPatterns
{}
{
gsave
1
setgray
fill
grestore
}
ifelse
}
def
%
% Substitute for Level 2 pattern fill codes with
% grayscale if Level 2 support is not selected.
%
/Level1PatternFill
{
/Pattern1
{
0.250
Density
}
bind
def
/Pattern2
{
0.500
Density
}
bind
def
/Pattern3
{
0.750
Density
}
bind
def
/Pattern4
{
0.125
Density
}
bind
def
/Pattern5
{
0.375
Density
}
bind
def
/Pattern6
{
0.625
Density
}
bind
def
/Pattern7
{
0.875
Density
}
bind
def
}
def
%
% Now test for support of Level 2 code
%
Level1
{
Level1PatternFill
}
{
Level2PatternFill
}
ifelse
%
/Symbol-Oblique
/Symbol
findfont
[
1
0
.167
1
0
0
]
makefont
dup
length
dict
begin
{
1
index
/FID
eq
{
pop
pop
}
{
def
}
ifelse
}
forall
currentdict
end
definefont
pop
/MFshow
{
{
dup
5
get
3
ge
{
5
get
3
eq
{
gsave
}
{
grestore
}
ifelse
}
{
dup
dup
0
get
findfont
exch
1
get
scalefont
setfont
[
currentpoint
]
exch
dup
2
get
0
exch
R
dup
5
get
2
ne
{
dup
dup
6
get
exch
4
get
{
Gshow
}
{
stringwidth
pop
0
R
}
ifelse
}
if
dup
5
get
0
eq
{
dup
3
get
{
2
get
neg
0
exch
R
pop
}
{
pop
aload
pop
M
}
ifelse
}
{
dup
5
get
1
eq
{
dup
2
get
exch
dup
3
get
exch
6
get
stringwidth
pop
-2
div
dup
0
R
}
{
dup
6
get
stringwidth
pop
-2
div
0
R
6
get
show
2
index
{
aload
pop
M
neg
3
-1
roll
neg
R
pop
pop
}
{
pop
pop
pop
pop
aload
pop
M
}
ifelse
}
ifelse
}
ifelse
}
ifelse
}
forall
}
def
/Gswidth
{
dup
type
/stringtype
eq
{
stringwidth
}
{
pop
(n)
stringwidth
}
ifelse
}
def
/MFwidth
{
0
exch
{
dup
5
get
3
ge
{
5
get
3
eq
{
0
}
{
pop
}
ifelse
}
{
dup
3
get
{
dup
dup
0
get
findfont
exch
1
get
scalefont
setfont
6
get
Gswidth
pop
add
}
{
pop
}
ifelse
}
ifelse
}
forall
}
def
/MLshow
{
currentpoint
stroke
M
0
exch
R
Blacktext
{
gsave
0
setgray
MFshow
grestore
}
{
MFshow
}
ifelse
}
bind
def
/MRshow
{
currentpoint
stroke
M
exch
dup
MFwidth
neg
3
-1
roll
R
Blacktext
{
gsave
0
setgray
MFshow
grestore
}
{
MFshow
}
ifelse
}
bind
def
/MCshow
{
currentpoint
stroke
M
exch
dup
MFwidth
-2
div
3
-1
roll
R
Blacktext
{
gsave
0
setgray
MFshow
grestore
}
{
MFshow
}
ifelse
}
bind
def
/XYsave
{
[
( )
1
2
true
false
3
()
]
}
bind
def
/XYrestore
{
[
( )
1
2
true
false
4
()
]
}
bind
def
end
%%EndProlog
%%Page: 1 1
gnudict
begin
gsave
50
50
translate
0.100
0.100
scale
0
setgray
newpath
(Helvetica)
findfont
140
scalefont
setfont
1.000
UL
LTb
882
420
M
63
0
V
3857
0
R
-63
0
V
stroke
798
420
M
[
[
(Helvetica)
140.0
0.0
true
true
0
( 10)
]
]
-46.7
MRshow
1.000
UL
LTb
882
1058
M
31
0
V
3889
0
R
-31
0
V
882
1431
M
31
0
V
3889
0
R
-31
0
V
882
1696
M
31
0
V
3889
0
R
-31
0
V
882
1902
M
31
0
V
3889
0
R
-31
0
V
882
2070
M
31
0
V
3889
0
R
-31
0
V
882
2212
M
31
0
V
3889
0
R
-31
0
V
882
2335
M
31
0
V
3889
0
R
-31
0
V
882
2443
M
31
0
V
3889
0
R
-31
0
V
882
2540
M
63
0
V
3857
0
R
-63
0
V
stroke
798
2540
M
[
[
(Helvetica)
140.0
0.0
true
true
0
( 100)
]
]
-46.7
MRshow
1.000
UL
LTb
882
3178
M
31
0
V
3889
0
R
-31
0
V
882
3551
M
31
0
V
3889
0
R
-31
0
V
882
3816
M
31
0
V
3889
0
R
-31
0
V
882
4022
M
31
0
V
3889
0
R
-31
0
V
882
4190
M
31
0
V
3889
0
R
-31
0
V
882
4332
M
31
0
V
3889
0
R
-31
0
V
882
4455
M
31
0
V
3889
0
R
-31
0
V
882
4563
M
31
0
V
3889
0
R
-31
0
V
882
4660
M
63
0
V
3857
0
R
-63
0
V
stroke
798
4660
M
[
[
(Helvetica)
140.0
0.0
true
true
0
( 1000)
]
]
-46.7
MRshow
1.000
UL
LTb
882
5298
M
31
0
V
3889
0
R
-31
0
V
882
5671
M
31
0
V
3889
0
R
-31
0
V
882
5936
M
31
0
V
3889
0
R
-31
0
V
882
6142
M
31
0
V
3889
0
R
-31
0
V
882
6310
M
31
0
V
3889
0
R
-31
0
V
882
6452
M
31
0
V
3889
0
R
-31
0
V
882
6575
M
31
0
V
3889
0
R
-31
0
V
882
6683
M
31
0
V
3889
0
R
-31
0
V
882
6780
M
63
0
V
3857
0
R
-63
0
V
stroke
798
6780
M
[
[
(Helvetica)
140.0
0.0
true
true
0
( 10000)
]
]
-46.7
MRshow
1.000
UL
LTb
1069
420
M
0
63
V
0
6297
R
0
-63
V
stroke
1069
280
M
[
[
(Helvetica)
140.0
0.0
true
true
0
( 100)
]
]
-46.7
MCshow
1.000
UL
LTb
2002
420
M
0
63
V
0
6297
R
0
-63
V
stroke
2002
280
M
[
[
(Helvetica)
140.0
0.0
true
true
0
( 150)
]
]
-46.7
MCshow
1.000
UL
LTb
2935
420
M
0
63
V
0
6297
R
0
-63
V
stroke
2935
280
M
[
[
(Helvetica)
140.0
0.0
true
true
0
( 200)
]
]
-46.7
MCshow
1.000
UL
LTb
3869
420
M
0
63
V
0
6297
R
0
-63
V
stroke
3869
280
M
[
[
(Helvetica)
140.0
0.0
true
true
0
( 250)
]
]
-46.7
MCshow
1.000
UL
LTb
4802
420
M
0
63
V
0
6297
R
0
-63
V
stroke
4802
280
M
[
[
(Helvetica)
140.0
0.0
true
true
0
( 300)
]
]
-46.7
MCshow
1.000
UL
LTb
1.000
UL
LTb
882
6780
N
882
420
L
3920
0
V
0
6360
V
-3920
0
V
Z
stroke
LCb
setrgbcolor
140
3600
M
currentpoint
gsave
translate
90
rotate
0
0
moveto
[
[
(Helvetica)
140.0
0.0
true
true
0
(XS[fb])
]
]
-46.7
MCshow
grestore
LTb
LCb
setrgbcolor
2842
70
M
[
[
(Helvetica)
140.0
0.0
true
true
0
(MH [GeV])
]
]
-46.7
MCshow
LTb
2842
6990
M
[
[
(Helvetica)
140.0
0.0
true
true
0
(Tevatron SM gluon fusion cross section)
]
]
-46.7
MCshow
1.000
UP
1.000
UL
LTb
1.000
UL
LT0
LTb
4151
6647
M
[
[
(Helvetica)
140.0
0.0
true
true
0
(TeV4LHC)
]
]
-46.7
MRshow
LT0
4235
6647
M
399
0
V
882
5369
M
9
-13
V
10
-12
V
9
-13
V
9
-13
V
10
-12
V
9
-13
V
9
-12
V
10
-13
V
9
-12
V
9
-12
V
10
-13
V
9
-12
V
9
-12
V
10
-13
V
9
-12
V
9
-12
V
10
-12
V
9
-12
V
9
-12
V
10
-12
V
9
-12
V
9
-12
V
10
-12
V
9
-12
V
9
-12
V
10
-12
V
9
-11
V
9
-12
V
10
-12
V
9
-11
V
9
-12
V
10
-12
V
9
-11
V
9
-12
V
10
-11
V
9
-12
V
9
-11
V
10
-12
V
9
-11
V
9
-11
V
10
-12
V
9
-11
V
9
-11
V
10
-11
V
9
-12
V
9
-11
V
10
-11
V
9
-11
V
9
-11
V
10
-11
V
9
-11
V
9
-11
V
10
-11
V
9
-11
V
9
-11
V
10
-11
V
9
-11
V
9
-10
V
10
-11
V
9
-11
V
9
-11
V
10
-10
V
9
-11
V
9
-11
V
10
-10
V
9
-11
V
9
-11
V
10
-10
V
9
-11
V
9
-10
V
10
-11
V
9
-10
V
9
-11
V
10
-10
V
9
-10
V
9
-11
V
10
-10
V
9
-10
V
9
-11
V
10
-10
V
9
-10
V
9
-10
V
10
-10
V
9
-10
V
9
-11
V
10
-10
V
9
-10
V
9
-10
V
10
-10
V
9
-10
V
9
-10
V
10
-10
V
9
-10
V
9
-10
V
10
-10
V
9
-9
V
9
-10
V
10
-10
V
9
-10
V
9
-10
V
10
-9
V
9
-10
V
1843
4229
L
10
-9
V
9
-10
V
9
-10
V
10
-9
V
9
-10
V
9
-10
V
10
-9
V
9
-10
V
9
-9
V
10
-10
V
9
-9
V
9
-10
V
10
-9
V
9
-9
V
9
-10
V
10
-9
V
9
-10
V
9
-9
V
10
-9
V
9
-9
V
9
-10
V
10
-9
V
9
-9
V
9
-9
V
10
-10
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-8
V
9
-9
V
10
-9
V
9
-9
V
9
-8
V
10
-9
V
9
-9
V
9
-9
V
10
-8
V
9
-9
V
9
-9
V
10
-8
V
9
-9
V
9
-8
V
10
-9
V
9
-9
V
9
-8
V
10
-9
V
9
-8
V
9
-9
V
10
-8
V
9
-8
V
9
-9
V
10
-8
V
9
-9
V
9
-8
V
10
-9
V
9
-8
V
9
-8
V
10
-9
V
9
-8
V
9
-8
V
10
-8
V
9
-9
V
9
-8
V
10
-8
V
9
-8
V
9
-8
V
10
-9
V
9
-8
V
9
-8
V
10
-8
V
9
-8
V
9
-8
V
10
-8
V
9
-8
V
9
-8
V
10
-8
V
9
-8
V
9
-8
V
10
-8
V
9
-8
V
9
-8
V
10
-8
V
9
-8
V
9
-8
V
10
-8
V
9
-8
V
9
-8
V
10
-8
V
9
-7
V
2823
3317
L
10
-8
V
9
-8
V
9
-8
V
10
-7
V
9
-8
V
9
-8
V
10
-8
V
9
-7
V
9
-8
V
10
-8
V
9
-7
V
9
-8
V
10
-8
V
9
-7
V
9
-8
V
10
-7
V
9
-8
V
9
-8
V
10
-7
V
9
-8
V
9
-7
V
10
-8
V
9
-7
V
9
-8
V
10
-7
V
9
-8
V
9
-7
V
10
-7
V
9
-8
V
9
-7
V
10
-8
V
9
-7
V
9
-7
V
10
-8
V
9
-7
V
9
-7
V
10
-8
V
9
-7
V
9
-7
V
10
-7
V
9
-8
V
9
-7
V
10
-7
V
9
-7
V
9
-7
V
10
-8
V
9
-7
V
9
-7
V
10
-7
V
9
-7
V
9
-7
V
10
-7
V
9
-8
V
9
-7
V
10
-7
V
9
-7
V
9
-7
V
10
-7
V
9
-7
V
9
-7
V
10
-7
V
9
-7
V
9
-7
V
10
-7
V
9
-7
V
9
-7
V
10
-7
V
9
-6
V
9
-7
V
10
-7
V
9
-7
V
9
-7
V
10
-7
V
9
-7
V
9
-6
V
10
-7
V
9
-7
V
9
-7
V
10
-7
V
9
-6
V
9
-7
V
10
-7
V
9
-7
V
9
-6
V
10
-7
V
9
-7
V
9
-6
V
10
-7
V
9
-7
V
9
-6
V
10
-7
V
9
-7
V
9
-6
V
10
-7
V
9
-6
V
9
-7
V
10
-6
V
9
-7
V
9
-7
V
10
-6
V
9
-7
V
9
-6
V
10
-7
V
9
-6
V
3803
2570
L
10
-6
V
9
-6
V
9
-7
V
10
-6
V
9
-7
V
9
-6
V
10
-7
V
9
-6
V
9
-6
V
10
-7
V
9
-6
V
9
-6
V
10
-7
V
9
-6
V
9
-6
V
10
-7
V
9
-6
V
9
-6
V
10
-6
V
9
-7
V
9
-6
V
10
-6
V
9
-6
V
9
-7
V
10
-6
V
9
-6
V
9
-6
V
10
-6
V
9
-6
V
9
-7
V
10
-6
V
9
-6
V
9
-6
V
10
-6
V
9
-6
V
9
-6
V
10
-6
V
9
-6
V
9
-6
V
10
-6
V
9
-7
V
9
-6
V
10
-6
V
9
-6
V
9
-6
V
10
-6
V
9
-5
V
9
-6
V
10
-6
V
9
-6
V
9
-6
V
10
-6
V
9
-6
V
9
-6
V
10
-6
V
9
-6
V
9
-6
V
10
-6
V
9
-5
V
9
-6
V
10
-6
V
9
-6
V
9
-6
V
10
-5
V
9
-6
V
9
-6
V
10
-6
V
9
-6
V
9
-5
V
10
-6
V
9
-6
V
9
-6
V
10
-5
V
9
-6
V
9
-6
V
10
-5
V
9
-6
V
9
-6
V
10
-5
V
9
-6
V
9
-6
V
10
-5
V
9
-6
V
9
-5
V
10
-6
V
9
-6
V
9
-5
V
10
-6
V
9
-5
V
9
-6
V
10
-5
V
9
-6
V
9
-6
V
10
-5
V
9
-6
V
9
-5
V
10
-6
V
9
-5
V
9
-6
V
10
-5
V
9
-5
V
9
-6
V
10
-5
V
9
-6
V
4783
1949
L
10
-6
V
1.000
UP
stroke
LT1
LTb
4151
6507
M
[
[
(Helvetica)
140.0
0.0
true
true
0
(TeV4LHC)
]
]
-46.7
MRshow
LT1
1069
5125
Pls
1255
4888
Pls
1442
4666
Pls
1629
4456
Pls
1815
4258
Pls
2002
4067
Pls
2189
3885
Pls
2375
3712
Pls
2562
3542
Pls
2749
3380
Pls
2935
3227
Pls
3309
2932
Pls
3682
2653
Pls
4055
2397
Pls
4429
2159
Pls
4802
1941
Pls
4434
6507
Pls
1.000
UL
LT2
LTb
4151
6367
M
[
[
(Helvetica)
140.0
0.0
true
true
0
(9713)
]
]
-46.7
MRshow
LT2
4235
6367
M
399
0
V
882
5484
M
9
-13
V
10
-13
V
9
-13
V
9
-14
V
10
-13
V
9
-13
V
9
-13
V
10
-13
V
9
-13
V
9
-13
V
10
-13
V
9
-12
V
9
-13
V
10
-13
V
9
-13
V
9
-13
V
10
-12
V
9
-13
V
9
-12
V
10
-13
V
9
-13
V
9
-12
V
10
-13
V
9
-12
V
9
-12
V
10
-13
V
9
-12
V
9
-13
V
10
-12
V
9
-12
V
9
-12
V
10
-13
V
9
-12
V
9
-12
V
10
-12
V
9
-12
V
9
-12
V
10
-12
V
9
-12
V
9
-12
V
10
-12
V
9
-12
V
9
-12
V
10
-12
V
9
-12
V
9
-11
V
10
-12
V
9
-12
V
9
-12
V
10
-11
V
9
-12
V
9
-12
V
10
-11
V
9
-12
V
9
-12
V
10
-11
V
9
-12
V
9
-11
V
10
-12
V
9
-11
V
9
-12
V
10
-11
V
9
-11
V
9
-12
V
10
-11
V
9
-11
V
9
-12
V
10
-11
V
9
-11
V
9
-11
V
10
-12
V
9
-11
V
9
-11
V
10
-11
V
9
-11
V
9
-11
V
10
-11
V
9
-11
V
9
-12
V
10
-11
V
9
-11
V
9
-11
V
10
-10
V
9
-11
V
9
-11
V
10
-11
V
9
-11
V
9
-11
V
10
-11
V
9
-11
V
9
-10
V
10
-11
V
9
-11
V
9
-11
V
10
-10
V
9
-11
V
9
-11
V
10
-10
V
9
-11
V
9
-11
V
10
-10
V
9
-11
V
1843
4274
L
10
-10
V
9
-11
V
9
-10
V
10
-11
V
9
-10
V
9
-11
V
10
-10
V
9
-11
V
9
-10
V
10
-10
V
9
-11
V
9
-10
V
10
-11
V
9
-10
V
9
-10
V
10
-11
V
9
-10
V
9
-10
V
10
-10
V
9
-11
V
9
-10
V
10
-10
V
9
-10
V
9
-11
V
10
-10
V
9
-10
V
9
-10
V
10
-10
V
9
-10
V
9
-10
V
10
-11
V
9
-10
V
9
-10
V
10
-10
V
9
-10
V
9
-10
V
10
-10
V
9
-10
V
9
-10
V
10
-10
V
9
-10
V
9
-10
V
10
-10
V
9
-10
V
9
-10
V
10
-9
V
9
-10
V
9
-10
V
10
-10
V
9
-10
V
9
-10
V
10
-10
V
9
-9
V
9
-10
V
10
-10
V
9
-10
V
9
-9
V
10
-10
V
9
-10
V
9
-10
V
10
-9
V
9
-10
V
9
-10
V
10
-9
V
9
-10
V
9
-10
V
10
-9
V
9
-10
V
9
-10
V
10
-9
V
9
-10
V
9
-9
V
10
-10
V
9
-10
V
9
-9
V
10
-10
V
9
-9
V
9
-10
V
10
-9
V
9
-10
V
9
-9
V
10
-10
V
9
-9
V
9
-10
V
10
-9
V
9
-10
V
9
-9
V
10
-9
V
9
-10
V
9
-9
V
10
-10
V
9
-9
V
9
-9
V
10
-10
V
9
-9
V
9
-10
V
10
-9
V
9
-9
V
9
-10
V
10
-9
V
9
-9
V
9
-9
V
10
-10
V
9
-9
V
2823
3241
L
10
-10
V
9
-9
V
9
-9
V
10
-9
V
9
-10
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-10
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-10
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-10
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-8
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-8
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-8
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-8
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-8
V
9
-9
V
9
-9
V
10
-9
V
9
-8
V
9
-9
V
10
-9
V
9
-9
V
9
-8
V
10
-9
V
9
-9
V
9
-8
V
10
-9
V
9
-9
V
9
-9
V
10
-8
V
9
-9
V
9
-9
V
10
-8
V
9
-9
V
9
-9
V
10
-8
V
9
-9
V
9
-9
V
10
-8
V
9
-9
V
9
-9
V
10
-8
V
9
-9
V
9
-8
V
10
-9
V
9
-9
V
9
-8
V
10
-9
V
9
-9
V
3803
2307
L
10
-9
V
9
-8
V
9
-9
V
10
-8
V
9
-9
V
9
-9
V
10
-8
V
9
-9
V
9
-8
V
10
-9
V
9
-8
V
9
-9
V
10
-8
V
9
-9
V
9
-9
V
10
-8
V
9
-9
V
9
-8
V
10
-9
V
9
-8
V
9
-9
V
10
-8
V
9
-9
V
9
-8
V
10
-9
V
9
-8
V
9
-9
V
10
-8
V
9
-9
V
9
-8
V
10
-9
V
9
-8
V
9
-9
V
10
-8
V
9
-8
V
9
-9
V
10
-8
V
9
-9
V
9
-8
V
10
-9
V
9
-8
V
9
-9
V
10
-8
V
9
-8
V
9
-9
V
10
-8
V
9
-9
V
9
-8
V
10
-9
V
9
-8
V
9
-8
V
10
-9
V
9
-8
V
9
-9
V
10
-8
V
9
-8
V
9
-9
V
10
-8
V
9
-9
V
9
-8
V
10
-8
V
9
-9
V
9
-8
V
10
-8
V
9
-9
V
9
-8
V
10
-9
V
9
-8
V
9
-8
V
10
-9
V
9
-8
V
9
-8
V
10
-9
V
9
-8
V
9
-8
V
10
-9
V
9
-8
V
9
-8
V
10
-9
V
9
-8
V
9
-8
V
10
-9
V
9
-8
V
9
-8
V
10
-9
V
9
-8
V
9
-8
V
10
-9
V
9
-8
V
9
-8
V
10
-8
V
9
-9
V
9
-8
V
10
-8
V
9
-9
V
9
-8
V
10
-8
V
9
-8
V
9
-9
V
10
-8
V
9
-8
V
9
-9
V
10
-8
V
9
-8
V
4783
1424
L
10
-9
V
1.000
UP
stroke
LT3
LTb
4151
6227
M
[
[
(Helvetica)
140.0
0.0
true
true
0
(CDF Note 9713)
]
]
-46.7
MRshow
LT3
1069
5232
Crs
1162
5103
Crs
1255
4978
Crs
1349
4858
Crs
1442
4742
Crs
1535
4629
Crs
1629
4519
Crs
1722
4412
Crs
1815
4308
Crs
1909
4206
Crs
2002
4106
Crs
2095
4007
Crs
2189
3902
Crs
2282
3791
Crs
2375
3691
Crs
2469
3593
Crs
2562
3498
Crs
2655
3402
Crs
2749
3311
Crs
2842
3223
Crs
2935
3141
Crs
4434
6227
Crs
1.000
UL
LT4
LTb
4151
6087
M
[
[
(Helvetica)
140.0
0.0
true
true
0
(9674)
]
]
-46.7
MRshow
LT4
4235
6087
M
399
0
V
882
5367
M
9
-12
V
10
-11
V
9
-12
V
9
-11
V
10
-12
V
9
-11
V
9
-12
V
10
-11
V
9
-11
V
9
-12
V
10
-11
V
9
-11
V
9
-12
V
10
-11
V
9
-11
V
9
-11
V
10
-11
V
9
-11
V
9
-12
V
10
-11
V
9
-11
V
9
-11
V
10
-11
V
9
-11
V
9
-11
V
10
-11
V
9
-11
V
9
-10
V
10
-11
V
9
-11
V
9
-11
V
10
-11
V
9
-10
V
9
-11
V
10
-11
V
9
-11
V
9
-10
V
10
-11
V
9
-11
V
9
-10
V
10
-11
V
9
-11
V
9
-10
V
10
-11
V
9
-10
V
9
-11
V
10
-10
V
9
-11
V
9
-10
V
10
-11
V
9
-10
V
9
-10
V
10
-11
V
9
-10
V
9
-11
V
10
-10
V
9
-10
V
9
-10
V
10
-11
V
9
-10
V
9
-10
V
10
-11
V
9
-10
V
9
-10
V
10
-10
V
9
-10
V
9
-10
V
10
-11
V
9
-10
V
9
-10
V
10
-10
V
9
-10
V
9
-10
V
10
-10
V
9
-10
V
9
-10
V
10
-10
V
9
-10
V
9
-10
V
10
-10
V
9
-10
V
9
-10
V
10
-10
V
9
-10
V
9
-10
V
10
-10
V
9
-10
V
9
-10
V
10
-9
V
9
-10
V
9
-10
V
10
-10
V
9
-10
V
9
-10
V
10
-9
V
9
-10
V
9
-10
V
10
-10
V
9
-9
V
9
-10
V
10
-10
V
9
-10
V
1843
4287
L
10
-10
V
9
-10
V
9
-9
V
10
-10
V
9
-10
V
9
-9
V
10
-10
V
9
-9
V
9
-10
V
10
-10
V
9
-9
V
9
-10
V
10
-9
V
9
-10
V
9
-9
V
10
-10
V
9
-10
V
9
-9
V
10
-10
V
9
-9
V
9
-10
V
10
-9
V
9
-10
V
9
-9
V
10
-10
V
9
-9
V
9
-9
V
10
-10
V
9
-9
V
9
-10
V
10
-9
V
9
-10
V
9
-9
V
10
-9
V
9
-10
V
9
-9
V
10
-9
V
9
-10
V
9
-9
V
10
-10
V
9
-9
V
9
-9
V
10
-10
V
9
-9
V
9
-9
V
10
-10
V
9
-9
V
9
-9
V
10
-9
V
9
-10
V
9
-9
V
10
-9
V
9
-10
V
9
-9
V
10
-9
V
9
-9
V
9
-10
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-10
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-10
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-10
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-10
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-10
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-10
V
9
-9
V
10
-9
V
9
-9
V
2823
3310
L
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-8
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-8
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-8
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-8
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
3803
2369
L
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-8
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-10
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-10
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-10
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-10
V
9
-9
V
9
-9
V
10
-9
V
9
-9
V
9
-9
V
10
-9
V
9
-10
V
9
-9
V
10
-9
V
9
-9
V
4783
1420
L
10
-9
V
1.000
UP
stroke
LT5
LTb
4151
5947
M
[
[
(Helvetica)
140.0
0.0
true
true
0
(CDF Note 9674)
]
]
-46.7
MRshow
LT5
1069
5143
Star
1162
5032
Star
1255
4924
Star
1349
4819
Star
1442
4711
Star
1535
4608
Star
1629
4508
Star
1722
4410
Star
1815
4315
Star
1909
4222
Star
2002
4132
Star
2095
4043
Star
2189
3946
Star
2282
3838
Star
2375
3739
Star
2469
3649
Star
2562
3561
Star
2749
3375
Star
2935
3211
Star
4434
5947
Star
1.000
UL
LTb
882
6780
N
882
420
L
3920
0
V
0
6360
V
-3920
0
V
Z
stroke
1.000
UP
1.000
UL
LTb
stroke
grestore
end
showpage
%%Trailer
%%DocumentFonts: Helvetica
%%Pages: 1
File Metadata
Details
Attached
Mime Type
application/postscript
Expires
Wed, May 14, 11:25 AM (17 h, 1 m)
Storage Engine
blob
Storage Format
Raw Data
Storage Handle
5111417
Default Alt Text
tev-SM_XS-fit-functions_comp2tables_ggH.ps (29 KB)
Attached To
rHIGGSBOUNDSSVN higgsboundssvn
Event Timeline
Log In to Comment