%!PS-Adobe-2.0 %%Title: psr_vs_detuning.ps %%Creator: gnuplot 4.2 patchlevel 2 %%CreationDate: Sat Jul 10 11:37:59 2010 %%DocumentFonts: (atend) %%BoundingBox: 50 50 612 792 %%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 false def /Blacktext false def /Solid false 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 (psr_vs_detuning.ps) /Subject (gnuplot plot) /Creator (gnuplot 4.2 patchlevel 2 ) /Author (Eugeniy Mikhailov) % /Producer (gnuplot) % /Keywords () /CreationDate (Sat Jul 10 11:37:59 2010) /DOCINFO pdfmark end } ifelse % % Gnuplot Prolog Version 4.2 (August 2006) % /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 /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 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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 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/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 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 {show} {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} bind 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 stringwidth pop add} {pop} ifelse} ifelse} forall} bind 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 gsave % colour palette begin /maxcolors 64 def /HSV2RGB { exch dup 0.0 eq {pop exch pop dup dup} % achromatic gray { /HSVs exch def /HSVv exch def 6.0 mul dup floor dup 3 1 roll sub /HSVf exch def /HSVi exch cvi def /HSVp HSVv 1.0 HSVs sub mul def /HSVq HSVv 1.0 HSVs HSVf mul sub mul def /HSVt HSVv 1.0 HSVs 1.0 HSVf sub mul sub mul def /HSVi HSVi 6 mod def 0 HSVi eq {HSVv HSVt HSVp} {1 HSVi eq {HSVq HSVv HSVp}{2 HSVi eq {HSVp HSVv HSVt} {3 HSVi eq {HSVp HSVq HSVv}{4 HSVi eq {HSVt HSVp HSVv} {HSVv HSVp HSVq} ifelse} ifelse} ifelse} ifelse} ifelse } ifelse} def /Constrain { dup 0 lt {0 exch pop}{dup 1 gt {1 exch pop} if} ifelse} def /YIQ2RGB { 3 copy -1.702 mul exch -1.105 mul add add Constrain 4 1 roll 3 copy -0.647 mul exch -0.272 mul add add Constrain 5 1 roll 0.621 mul exch -0.956 mul add add Constrain 3 1 roll } def /CMY2RGB { 1 exch sub exch 1 exch sub 3 2 roll 1 exch sub 3 1 roll exch } def /XYZ2RGB { 3 copy -0.9017 mul exch -0.1187 mul add exch 0.0585 mul exch add Constrain 4 1 roll 3 copy -0.0279 mul exch 1.999 mul add exch -0.9844 mul add Constrain 5 1 roll -0.2891 mul exch -0.5338 mul add exch 1.91 mul exch add Constrain 3 1 roll} def /SelectSpace {ColorSpace (HSV) eq {HSV2RGB}{ColorSpace (XYZ) eq { XYZ2RGB}{ColorSpace (CMY) eq {CMY2RGB}{ColorSpace (YIQ) eq {YIQ2RGB} if} ifelse} ifelse} ifelse} def /InterpolatedColor true def /grayindex {/gidx 0 def {GrayA gidx get grayv ge {exit} if /gidx gidx 1 add def} loop} def /dgdx {grayv GrayA gidx get sub GrayA gidx 1 sub get GrayA gidx get sub div} def /redvalue {RedA gidx get RedA gidx 1 sub get RedA gidx get sub dgdxval mul add} def /greenvalue {GreenA gidx get GreenA gidx 1 sub get GreenA gidx get sub dgdxval mul add} def /bluevalue {BlueA gidx get BlueA gidx 1 sub get BlueA gidx get sub dgdxval mul add} def /interpolate { grayindex grayv GrayA gidx get sub abs 1e-5 le {RedA gidx get GreenA gidx get BlueA gidx get} {/dgdxval dgdx def redvalue greenvalue bluevalue} ifelse} def /GrayA [0 .0159 .0317 .0476 .0635 .0794 .0952 .1111 .127 .1429 .1587 .1746 .1905 .2063 .2222 .2381 .254 .2698 .2857 .3016 .3175 .3333 .3492 .3651 .381 .3968 .4127 .4286 .4444 .4603 .4762 .4921 .5079 .5238 .5397 .5556 .5714 .5873 .6032 .619 .6349 .6508 .6667 .6825 .6984 .7143 .7302 .746 .7619 .7778 .7937 .8095 .8254 .8413 .8571 .873 .8889 .9048 .9206 .9365 .9524 .9683 .9841 1 ] def /RedA [.057 .0642 .0715 .0787 .086 .0932 .1004 .1077 .1187 .1559 .1932 .2305 .2677 .305 .3423 .3795 .4168 .4541 .4914 .5286 .5659 .6032 .6404 .6777 .7054 .7172 .7289 .7406 .7524 .7641 .7759 .7876 .7994 .8111 .8229 .8346 .8464 .8581 .8698 .8816 .8627 .8254 .7882 .7509 .7136 .6764 .6391 .6018 .5645 .5273 .49 .4527 .4155 .3782 .3409 .3037 .2824 .2634 .2444 .2254 .2065 .1875 .1685 .1495 ] def /GreenA [.057 .0642 .0715 .0787 .086 .0932 .1004 .1077 .1187 .1559 .1932 .2305 .2677 .305 .3423 .3795 .4168 .4541 .4914 .5286 .5659 .6032 .6404 .6777 .7054 .7172 .7289 .7406 .7524 .7641 .7759 .7876 .7994 .8111 .8229 .8346 .8464 .8581 .8698 .8816 .8627 .8254 .7882 .7509 .7136 .6764 .6391 .6018 .5645 .5273 .49 .4527 .4155 .3782 .3409 .3037 .2824 .2634 .2444 .2254 .2065 .1875 .1685 .1495 ] def /BlueA [.057 .0642 .0715 .0787 .086 .0932 .1004 .1077 .1187 .1559 .1932 .2305 .2677 .305 .3423 .3795 .4168 .4541 .4914 .5286 .5659 .6032 .6404 .6777 .7054 .7172 .7289 .7406 .7524 .7641 .7759 .7876 .7994 .8111 .8229 .8346 .8464 .8581 .8698 .8816 .8627 .8254 .7882 .7509 .7136 .6764 .6391 .6018 .5645 .5273 .49 .4527 .4155 .3782 .3409 .3037 .2824 .2634 .2444 .2254 .2065 .1875 .1685 .1495 ] def /pm3dround {maxcolors 0 gt {dup 1 ge {pop 1} {maxcolors mul floor maxcolors 1 sub div} ifelse} if} def /pm3dGamma 1.0 1.5 div def /ColorSpace (RGB) def Color true and { % COLOUR vs. GRAY map InterpolatedColor { %% Interpolation vs. RGB-Formula /g {stroke pm3dround /grayv exch def interpolate SelectSpace setrgbcolor} bind def }{ /g {stroke pm3dround dup cF7 Constrain exch dup cF5 Constrain exch cF15 Constrain SelectSpace setrgbcolor} bind def } ifelse }{ /g {stroke pm3dround pm3dGamma exp setgray} bind def } ifelse 0.500 UL LTb 394 2016 M 88 0 V 4241 0 R -88 0 V stroke 310 2016 M [ [(Helvetica) 120.0 0.0 true true 0 (-0.0004)] ] -40.0 MRshow 0.500 UL LTb 394 2723 M 88 0 V 4241 0 R -88 0 V stroke 310 2723 M [ [(Helvetica) 120.0 0.0 true true 0 (-0.0002)] ] -40.0 MRshow 0.500 UL LTb 394 3429 M 88 0 V 4241 0 R -88 0 V stroke 310 3429 M [ [(Helvetica) 120.0 0.0 true true 0 (0)] ] -40.0 MRshow 0.500 UL LTb 394 4136 M 88 0 V 4241 0 R -88 0 V stroke 310 4136 M [ [(Helvetica) 120.0 0.0 true true 0 (0.0002)] ] -40.0 MRshow 0.500 UL LTb 394 4843 M 88 0 V 4241 0 R -88 0 V stroke 310 4843 M [ [(Helvetica) 120.0 0.0 true true 0 (0.0004)] ] -40.0 MRshow 0.500 UL LTb 394 1663 M 0 88 V 0 3445 R 0 -88 V stroke 394 1523 M [ [(Helvetica) 120.0 0.0 true true 0 (-200)] ] -40.0 MCshow 0.500 UL LTb 1115 1663 M 0 88 V 0 3445 R 0 -88 V stroke 1115 1523 M [ [(Helvetica) 120.0 0.0 true true 0 (0)] ] -40.0 MCshow 0.500 UL LTb 1837 1663 M 0 88 V 0 3445 R 0 -88 V stroke 1837 1523 M [ [(Helvetica) 120.0 0.0 true true 0 (200)] ] -40.0 MCshow 0.500 UL LTb 2558 1663 M 0 88 V 0 3445 R 0 -88 V stroke 2558 1523 M [ [(Helvetica) 120.0 0.0 true true 0 (400)] ] -40.0 MCshow 0.500 UL LTb 3280 1663 M 0 88 V 0 3445 R 0 -88 V stroke 3280 1523 M [ [(Helvetica) 120.0 0.0 true true 0 (600)] ] -40.0 MCshow 0.500 UL LTb 4001 1663 M 0 88 V 0 3445 R 0 -88 V stroke 4001 1523 M [ [(Helvetica) 120.0 0.0 true true 0 (800)] ] -40.0 MCshow 0.500 UL LTb 4723 1663 M 0 88 V 0 3445 R 0 -88 V stroke 4723 1523 M [ [(Helvetica) 120.0 0.0 true true 0 (1000)] ] -40.0 MCshow 0.500 UL LTb 0.500 UL LTb 394 5196 N 0 -3533 V 4329 0 V 0 3533 V -4329 0 V Z stroke LCb setrgbcolor -432 3429 M currentpoint gsave translate 90 rotate 0 0 moveto [ [(Helvetica) 120.0 0.0 true true 0 (PSR \(radians\))] ] -40.0 MCshow grestore LTb LCb setrgbcolor 2558 1313 M [ [(Helvetica) 120.0 0.0 true true 0 (two photon detuning \(MHz\))] ] -40.0 MCshow LTb 2558 5686 M [ [(Helvetica) 120.0 0.0 true true 0 (BPD normilized PSR signal at F)] [(Helvetica) 96.0 -36.0 true true 0 (g)] [(Helvetica) 120.0 0.0 true true 0 (=2 to F)] [(Helvetica) 96.0 -36.0 true true 0 (e)] [(Helvetica) 120.0 0.0 true true 0 (=1,2.)] ] -28.0 MCshow 2558 5566 M [ [(Helvetica) 120.0 0.0 true true 0 ( Laser Rabi freq normalized to upper state decay 10.000, ellipticity -30.0 degree, )] ] -40.0 MCshow 2558 5446 M [ [(Helvetica) 120.0 0.0 true true 0 ( B field ground level splitting -1.000 Gauss)] ] -40.0 MCshow 1.000 UP 0.500 UL LTb 0.500 UL LT0 394 3229 M 4 -1 V 5 -1 V 4 -1 V 4 -2 V 5 -1 V 4 -1 V 4 -1 V 5 -1 V 4 -1 V 4 -1 V 5 -1 V 4 -2 V 4 -1 V 5 -1 V 4 -1 V 4 -1 V 5 -1 V 4 -1 V 4 -1 V 5 -2 V 4 -1 V 4 -1 V 5 -1 V 4 -1 V 4 -1 V 5 -2 V 4 -1 V 4 -1 V 5 -1 V 4 -1 V 4 -1 V 5 -1 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4 -1 V 5 0 V 4 0 V 4 -1 V 5 0 V 4 0 V 4 -1 V 5 0 V 4 0 V 4 -1 V 5 0 V 4 0 V 4 -1 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 0 V 4 -1 V 5 0 V 4 0 V 4 -1 V 5 0 V 4 0 V 4 -1 V 5 0 V 4 0 V 4 -1 V 5 0 V 2669 3479 L 4 -1 V 5 0 V 4 0 V 4 -1 V 5 0 V 4 0 V 4 0 V 5 -1 V 4 0 V 4 0 V 5 -1 V 4 0 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 0 V 4 -1 V 5 0 V 4 0 V 4 -1 V 5 0 V 4 0 V 4 0 V 5 -1 V 4 0 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 0 V 4 -1 V 5 0 V 4 0 V 4 -1 V 5 0 V 4 0 V 4 0 V 5 -1 V 4 0 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 0 V 4 -1 V 5 0 V 4 0 V 4 -1 V 5 0 V 4 0 V 4 0 V 5 -1 V 4 0 V 4 0 V 5 -1 V 4 0 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 0 V 4 -1 V 5 0 V 4 0 V 4 -1 V 5 0 V 4 0 V 4 0 V 5 -1 V 4 0 V 4 0 V 5 -1 V 4 0 V 4 0 V 5 -1 V 4 0 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 3124 3448 L 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 -1 V 4 0 V 4 0 V 5 -1 V 4 0 V 4 0 V 5 -1 V 4 0 V 4 -1 V 5 0 V 4 0 V 4 -1 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 -1 V 4 0 V 4 -1 V 5 0 V 4 0 V 4 -1 V 5 0 V 4 -1 V 4 0 V 5 -1 V 4 0 V 4 -1 V 5 0 V 4 0 V 4 -1 V 5 0 V 4 -1 V 4 0 V 5 -1 V 4 0 V 4 -1 V 5 0 V 4 -1 V 4 0 V 5 -1 V 4 0 V 4 -1 V 5 0 V 4 -1 V 4 0 V 5 -1 V 4 0 V 4 -1 V 5 0 V 4 -1 V 4 0 V 5 -1 V 4 0 V 4 -1 V 5 -1 V 4 0 V 4 -1 V 5 0 V 4 -1 V 4 0 V 5 -1 V 4 -1 V 4 0 V 5 -1 V 4 0 V 4 -1 V 5 0 V 4 -1 V 4 -1 V 5 0 V 4 -1 V 4 0 V 5 -1 V 4 -1 V 4 0 V 5 -1 V 3579 3401 L 4 -1 V 5 -1 V 4 0 V 4 -1 V 5 -1 V 4 0 V 4 -1 V 5 0 V 4 -1 V 4 -1 V 5 0 V 4 -1 V 4 -1 V 5 0 V 4 -1 V 4 0 V 5 -1 V 4 -1 V 4 0 V 5 -1 V 4 0 V 4 -1 V 5 -1 V 4 0 V 4 -1 V 5 0 V 4 -1 V 4 -1 V 5 0 V 4 -1 V 4 0 V 5 -1 V 4 0 V 4 -1 V 5 0 V 4 -1 V 4 0 V 5 -1 V 4 0 V 4 -1 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 0 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 0 V 4 0 V 5 1 V 4 0 V 4 0 V 5 0 V 4 0 V 4 0 V 5 1 V 4 0 V 4 1 V 5 0 V 4 1 V 4 0 V 5 1 V 4 0 V 4 1 V 5 1 V 4 1 V 4 0 V 5 1 V 4 1 V 4 1 V 5 1 V 4 1 V 4 2 V 5 1 V 4 1 V 4 1 V 5 2 V 4 1 V 4 2 V 5 1 V 4 2 V 4 2 V 5 1 V 4 2 V 4 2 V 5 2 V 4 2 V 4 2 V 5 2 V 4 2 V 4 2 V 5 2 V 4034 3421 L 4 2 V 5 3 V 4 2 V 4 2 V 5 2 V 4 3 V 4 2 V 5 2 V 4 3 V 4 2 V 5 2 V 4 3 V 4 2 V 5 2 V 4 3 V 4 2 V 5 3 V 4 2 V 4 2 V 5 3 V 4 2 V 4 2 V 5 3 V 4 2 V 4 2 V 5 2 V 4 3 V 4 2 V 5 2 V 4 2 V 4 2 V 5 2 V 4 2 V 4 2 V 5 2 V 4 2 V 4 2 V 5 2 V 4 1 V 4 2 V 5 2 V 4 1 V 4 2 V 5 2 V 4 1 V 4 2 V 5 1 V 4 1 V 4 2 V 5 1 V 4 1 V 4 1 V 5 2 V 4 1 V 4 1 V 5 1 V 4 1 V 4 1 V 5 1 V 4 0 V 4 1 V 5 1 V 4 1 V 4 1 V 5 0 V 4 1 V 4 1 V 5 0 V 4 1 V 4 0 V 5 1 V 4 0 V 4 1 V 5 0 V 4 0 V 4 1 V 5 0 V 4 0 V 4 1 V 5 0 V 4 0 V 4 0 V 5 0 V 4 1 V 4 0 V 5 0 V 4 0 V 4 0 V 5 0 V 4 0 V 4 0 V 5 0 V 4 0 V 4 0 V 5 0 V 4 0 V 4 0 V 5 0 V 4 0 V 4 0 V 5 -1 V 4 0 V 4 0 V 5 0 V 4489 3545 L 4 0 V 5 -1 V 4 0 V 4 0 V 5 0 V 4 0 V 4 -1 V 5 0 V 4 0 V 4 0 V 5 -1 V 4 0 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 -1 V 4 0 V 5 -1 V 4 0 V 4 0 V 5 -1 V 4 0 V 4 0 V 5 -1 V 4 0 V 4 -1 V 5 0 V 4 0 V 4 -1 V 5 0 V 4 0 V 4 -1 V 5 0 V 4 -1 V 4 0 V 5 0 V 4 -1 V 1.000 UP stroke LTb stroke grestore end showpage %%Trailer %%DocumentFonts: Helvetica %%Pages: 1