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L5fIHgH HWCE0HHHD M6HH ALHHD  L5*fIH@gH HBE0HHHDt M6HH ALHHDV & L5eIHfH HBE0HHHD M6HH lALHHDL5xeIHfH HLBE0HHHDM6HH CALHHDtL5eIH5fH HAE0HHHDiM6HH BLHHDKL5dIHeH HAE0HHHDM6HH @LHHDL5mdIHeH HAAE0HHHDM6HH @LHHDiL5dIH*eH H@E0HHHD^M6HH _@LHHD@L5cIHdH H@E0HHHDM6HH 6@LHHDL5bcIHxdH HAE0HHHDM6HH ALHHD^L5 cIHdH HEAE0HHHDSM6HH |ALHHD5L5bIHcH H@E0HHHDM6HH kALHHDL5WbIHmcH H@E0HHHDM6HH JALHHDSL5aIHcH H:@E0HHHDHM6HH 6LHHD*L5aIHbH H?E0HHHDM6HH 5LHHDL5LaIHbbH H?E0HHHDM6HH 5LHHDxHL5`IH bH H/?E0HHHD=M6HH f5LHHDL5`IHaH H>E0HHHDM6HH 35LHHDL5A`IHWaH H}>E0HHHDM6HH 4LHHDm=L5_IH`H H$>E0HHHD2M6HH 4LHHDL5_IH`H H=E0HHHDM6HH 4LHHDL56_IHL`H Hr=E0HHHDM6HH _4LHHDb2L5^IH_H H=E0HHHD'M6HH (4LHHD L5^IH_H H<E0HHHDM6HH 3LHHDL5+^IHA_H Hg<E0HHHDuM6HH 3LHHDW'L5]IH^H H<E0HHHDM6HH 3LHHDL5y]IH^H H;E0HHHDM6HH T3LHHDuL5 ]IH6^H H\;E0HHHDjM6HH #3LHHDLL5\IH]H H;E0HHHDM6HH 2LHHDL5n\IH]H H:E0HHHDM6HH 2LHHDjL5\IH+]H HQ:E0HHHD_M6HH 2LHHDAL5[IH\H H;E0HHHDM6HH O2LHHDL5c[IHy\H H9E0HHHDM6HH 2LHHD_L5 [IH \H HF9E0HHHDTM6HH 1LHHD6L5ZIH[H H8E0HHHDM6HH 1LHHDL5XZIHn[H H8E0HHHDM6HH {1LHHDTL5YIH[H H;8E0HHHDIM6HH B1LHHD+L5YIHZH H7E0HHHDM6HH 1LHHDL5MYIHcZH H7E0HHHDM6HH 0LHHDyIL5XIH ZH H07E0HHHD>M6HH 0LHHD L5XIHYH H8E0HHHDM6HH 8LHHDL5BXIHXYH H8E0HHHDM6HH 8LHHDn>L5WIHXH H-8E0HHHD3M6HH 8LHHDL5WIHXH H7E0HHHDM6HH k8LHHDL57WIHMXH H{7E0HHHDM6HH J8LHHDc3L5VIHWH H"7E0HHHD(M6HH )8LHHD L5VIHWH H6E0HHHDM6HH 8LHHDL5,VIHBWH Hp6E0HHHDvM6HH 7LHHDX(L5UIHVH H6E0HHHDM6HH /LHHDL5zUIHVH H5E0HHHDM6HH m7LHHDvL5!UIH7VH He5E0HHHDkM6HH /LHHDML5TIHUH H 5E0HHHDM6HH 6LHHDL5oTIHUH H4E0HHHDM6HH /LHHDkL5TIH,UH HZ4E0HHHD`M6HH Y6LHHDBL5SIHTH H4E0HHHDM6HH /LHHD  L5dSM6HzTHH X6E0LHHD ~ L5)SM6H?THH 6E0LHHDs C L5RM6HTHH 6E0LHHD8  L5RM6HSHH 5E0LHHD  HxRHH SH Ht>LE0HHHLD  H3RHH!'HHH S HQHH \!A'HHLHh  HQHH RH H>LE0HHHLD  HQHH RH H>LE0HHHLD  H;QHH QRH Hg>LE0HHHLD{ K HPHH RH H">LE0HHHLD6  HPHH QH H>LE0HHHLD  HlPHH QH H=LE0HHHLD | H'PHH =QH H=LE0HHHLDg 7 HOHH PH HF=LE0HHHLD"  HOHH PH H9=LE0HHHLD  HXOHH nPH H<LE0HHHLD h HOHH )PH H<LE0HHHLDS # HNHH OH Hj<LE0HHHLD HNHH OH H>LE0HHHLDHDNHH ZOH H>LE0HHHLDTHMHH OH H>LE0HHHLD?HMHH NH H>LE0HHHLDHuMHH NH H>LE0HHHLDH0MHH A'HHLHLHLHH UA'HHLHaHLHH A(HHLH(HLHH A(HHLHHLLHH zA(HHLHhHLHH AA(HHLH}/HKHH 8A'HHLHDHKHH A'HHLH HhKHH A'HHLHH/KHH A'HHLHKHJHH TA'HHLH`HJHH A'HHLH'HJHH A'HHLHHKJHH A'HHLHgHJHH pA'HHLH|.HIHH 7A'HHLHCHIHH A'HHLH HgIHH A'HHLHH.IHH A'HHLHJHHHH SA'HHLH_HHHH A'HHLH&HHHH A'HHLHHJHHH A'HHLHfHHHH oA'HHLH{-HGHH HH H:E0HHHD"HGHH A$HHLHH_GHH$HHHH*GHH=P$UHGHH=&$w+HFHH=$MHFHH=$#HFH8HGHH5:H0HOFH8HeGHH5{;H0qHFH;H2GHH5>H0l>1HĘ"[A\A]A^A_]%E%E%E%E%E%E%E%E%E%E%E%E%E%F%F%F%F%F% F% F%F%F%F%F%F%F%F%F%F% Fh"hh'h?hSh^hlh}hhhhhhhhhh xhnh'dh4Zh@PhNFh]<hj2hv(hhh hLCAS%C >YS????-DT! @-DT!@@eA̽A7,U?7,e?txޱA @Y@ڧ[x=$@.A?vIh%<=??%s: Error in indexes detected in routine %sinit_cantor_fractal_grating()! %s: Please verify that the number of discrete layers %s: in the grating is N-1, where N is an integer power of 2. Error in crdiv(): Division by zero! Error in cdiv(): Division by zero! %s:******* Error in fhl() routine! ******* %s: The following help line is too long: %s: '%s' %s: String is %d characters %s: (Maximum 80 characters per help line is allowed.) %s:******** End of error message ********* %s %s:******* Error in hl() routine! ******* %s: The first string argument is too long: %s: String lengths is %d characters %s: (Maximum 25 characters for first argument.) %s: The second string argument is too long: %s: (Maximum 55 characters for second argument.) %-25.25s%1.55s Usage: %s [options] Options: -h, --helpDisplay this help message and exit clean. -N -M -v, --verbose -o, --outputfile --fieldevolution {efield|stoke} --intensityevolution --normalize_length_to_um --normalize_intensityWhen saving the spatial evolution of the intra-grating intensity, normalize the intensity withrespect to the intensity at z=0, inside thegrating (that is to say, normalize with respectto the initial intra-grating intensity). Thisoption *only* affects the fields saved with the--intensityevolution or --fieldevolutionoptions. -r, --random -a, --apodize Apodize the grating structure over geometricaldistance at each end of the grating.The option only applies to gratings with sinus-oidal modulation of refractive index andgyration coefficient, in constant or chirpedperiodic configurations, as specified with the'--grating sinusoidal' or '--grating chirped'options respectively. The apodization is applied to the refractiveindex modulation and, in cases where the linearmagneto-optical is spatially modulated as well,to the linear gyration coefficient. -j, --phasejump Apply discrete phase jump in the spatial phaseof the grating profile. This option adds thereal number to the argument of the sinus-oidal function for the grating profile for allspatial coordinates z >= . As in the case of apodization, this optiononly applies to gratings with sinusoidal modu-lation of refractive index and gyration coeffi-cient, in constant or chirped periodic configu-rations, as specified with the '--gratingsinusoidal' or '--grating chirped' optionsrespectively. The discrete phase jump appliesto the linear linear refractive index modula-tion and, in cases where the linear magneto-optical interaction is spatially modulated aswell, also to the linear gyration coefficient. -w, --writegratingfile --spectrumfile Generates the complex reflectance as functionof the vacuum wavelength in meters, and savethe spectrum in file named according to thesupplied character string . --intensityspectrumfile Generates the intensity reflectance as function -g, --grating Specifies the grating type, where = [stepwise | sinusoidal | chirped ] = twolevel t1 t2 n1 n2 g1 g2 pe1 pe2 pm1 pm2 qe1 qe2 qm1 qm2 = n g pe pm qe qm = n g pe pm qe qm -L,--gratinglength Physical length of grating in meter [m] --refindsurr --trmtraject --trmintensity (intensity measured in Watts per square meter) --trmellipticity --lambdastart (start vacuum wavelength measured in meter) --lambdastop (stop vacuum wavelength measured in meter)Error: Allocation failure in dcvector() Error: Allocation failure in dvector() out.stokout.fevo.datout.fevo.s0.datout.fevo.s1.datout.fevo.s2.datout.fevo.s3.datout.rsp.datout.irsp.datout.trsp.datout.chec.datThis is %s v.%s. %s 1.43Copyright (C) 2002-2007, Fredrik Jonsson-o--outputfile-w--writegratingfile--displaysurrmedia-a--apodize%lf%s: Error in '--apodize' option. --phasejump%s: Error in 1st arg of '--phasejump' option. %s: Error in 2nd arg of '--phasejump' option. --fieldevolutionefieldstoke%s: Unknown field evolution flag '%s' in second argument of --fieldevolution option. %ld%s: Error in '--fieldevolution' option. %s.s0.dat%s.s1.dat%s.s2.dat%s.s3.dat--intensityevolution%s: Error in '--intensityevolution' option. --spectrumfile--stokesspectrum--trmtraject--intensityspectrumfile%s.irsp.dat%s.itsp.dat%s.chec.dat--logarithmicspectrum-v--verbose--scale_stokesparams%s: Error in '--scale_stokesparams' option. --intensityinfo--intensityinfologfile--gyroperturb%s: Error in '--gyroperturb' option. --normalize_length_to_um--normalize_intensity--normalize_ellipticity--normalizedrepresentation-r--random-h--help-g--gratingstepwisetwolevelt1%s: Error in 'twolevel' option. %s: (Expecting string 't1'). %s: (Could not read data for t1). t2%s: (Expecting string 't2'). %s: (Could not read data for t2). n1%s: (Expecting string 'n1'). %s: (Could not read data for n1). n2%s: (Expecting string 'n2'). %s: (Could not read data for n2). g1%s: (Expecting string 'g1'). %s: (Could not read data for g1). g2%s: (Expecting string 'g2'). %s: (Could not read data for g2). pe1%s: (Expecting string 'pe1'). %s: (Could not read data for pe1). pe2%s: (Expecting string 'pe2'). %s: (Could not read data for pe2). pm1%s: (Expecting string 'pm1'). %s: (Could not read data for pm1). pm2%s: (Expecting string 'pm2'). %s: (Could not read data for pm2). qe1%s: (Expecting string 'qe1'). %s: (Could not read data for qe1). qe2%s: (Expecting string 'qe2'). %s: (Could not read data for qe2). qm1%s: (Expecting string 'qm1'). %s: (Could not read data for qm1). qm2%s: (Expecting string 'qm2'). %s: (Could not read data for qm2). %s: Error in '-g' or '--grating' option. %s: (No valid stepwise grating type found!) sinusoidaln%s: Error in 'sinusoidal' option. %s: (Expecting string 'n'). %s: (Could not read data for n [1st arg]). %s: (Could not read data for n [2nd arg]). %s: (Could not read data for n [3rd arg]). g%s: (Expecting string 'g'). %s: (Could not read data for g [1st arg]). %s: (Could not read data for g [2nd arg]). %s: (Could not read data for g [3rd arg]). pe%s: (Expecting string 'pe'). %s: (Could not read data for pe [1st arg]). %s: (Could not read data for pe [2nd arg]). %s: (Could not read data for pe [3rd arg]). pm%s: (Expecting string 'pm'). %s: (Could not read data for pm [1st arg]). %s: (Could not read data for pm [2nd arg]). %s: (Could not read data for pm [3rd arg]). qe%s: (Expecting string 'qe'). %s: (Could not read data for qe [1st arg]). %s: (Could not read data for qe [2nd arg]). %s: (Could not read data for qe [3rd arg]). qm%s: (Expecting string 'qm'). %s: (Could not read data for qm [1st arg]). %s: (Could not read data for qm [2nd arg]). %s: (Could not read data for qm [3rd arg]). chirped%s: Error in 'chirped' grating option. %s: (Could not read data for n [4th arg]). %s: (Could not read data for g [4th arg]). %s: (Could not read data for pe [4th arg]). %s: (Could not read data for pm [4th arg]). %s: (Could not read data for qe [4th arg]). %s: (Could not read data for qm [4th arg]). fractalcantorfractal_level%s: Error in 'cantor' grating option. %s: (Expecting string 'fractal_level'). %d%s: (Could not read data for fractal_level). maximum_fractal_level%s: (Expecting string 'maximum_fractal_level'). %s: (Could not read data for maximum_fractal_level). %s: Error. %s: Error in 'fractal' grating option. %s: (No valid fractal type found!) %s: (Currently only Cantor type implemented) %s: (No valid grating type found!) -L--gratinglength%s: Error in '-L' option. --modifylayernum%s: Error in '--modifylayer'. %s: (Expecting string 'num' after '--modifylayer'). %s: (Could not read data for num). t%s: (Expecting string 't' [for layer thickness]). %s: (Could not read data for t [layer thickness]). %s: (Expecting string 'n' [for refractive index]). %s: (Could not read data for n [refractive index]). %s: (Expecting string 'g' [for gyration constant]). %s: (Could not read data for g [gyration constant]). %s: (Could not read data for pe). %s: (Could not read data for pm). %s: (Could not read data for qe). %s: (Could not read data for qm). --refindsurr%s: Error in '--refindsurr' option. --trmintensity%s: Error in '--trmintensity' option. --trmellipticity%s: Error in '--trmellipticity' option. --lambdastart%s: Error in '--lambdastart' option. --lambdastop%s: Error in '--lambdastop' option. --wlenlinz--freqlinz-N%s: Error in '-N' option. -M%s: Error in '-M' option. %s: Specified option invalid! %s.v0.dat%s.v1.dat%s.v2.dat%s.v3.dat%s.w0.dat%s.w1.dat%s.w2.dat%s.w3.dat- Input parameters: Grating type: %s Bias refractive index: %10.6e Refractive index modulation: %10.6e Modulation period: %10.6e [m] %s: Error: Unknown grating type '%s' Geometrical length: L=%10.6e [m] Surrounding refractive index: nsurr=%10.6e Begin wavelength of spectrum: lambda_start=%10.6e [m] End wavelength of spectrum: lambda_stop=%10.6e [m] Number of samples in spectrum: M=%-12ld Number of discrete layers: N=%-12ld Trajectory for transmitted Stokes parameters: %s Number of samples in output intensity: mmi=%-12ld Number of samples in output ellipticity: mme=%-12ld Stokes parameters will be written to files: %s [S0 (incident wave)], %s [S1 (incident wave)], %s [S2 (incident wave)], %s [S3 (incident wave)], %s [V0 (reflected wave)], %s [V1 (reflected wave)], %s [V2 (reflected wave)], %s [V3 (reflected wave)], %s [W0 (transmitted wave)], %s [W1 (transmitted wave)], %s [W2 (transmitted wave)], %s [W3 (transmitted wave)], Intra grating optical field evolution will be written to file: %s (Intra grating field evolution will be presented in terms of the electrical field displacement.) %s: Error: No file name specified for saving spatial field evolution. (efield option) Intra grating optical field evolution will be written to files: %s %s %s %s (Intra grating field evolution will be presented in terms of the Stokes parameters of the forward propagating field.) %s: Error: No file name specified for saving spatial field evolution. (stoke option) %s: Unknown field evolution flag. Number of intermediate samples within each layer: %-12ld Intra grating optical intensity evolution will be written to file: Program execution started %sr%s: Could not open file %s for reading Stokes parameter trajectory of transmitted wave! %s: I have now pre-parsed the specified trajectory of transmitted Stokes parameters (W0,W3) in file %s, and I found %-ld points. %s: Now allocating the vectors for the transmitted trajectory...%lew%s: Could not open %s for saving incident wave! %s: Could not open %s for saving reflected wave! %s: Could not open %s for saving transmitted wave! %s: Could not open file %s for fieldevo output! %s: Could not open file %s for saving spatial S0 distribution! %s: A name for the file for saving spatial S0 distribution is required! %s: Could not open file %s for saving spatial S1 distribution! %s: A name for the file for saving spatial S1 distribution is required! %s: Could not open file %s for saving spatial S2 distribution! %s: A name for the file for saving spatial S2 distribution is required! %s: Could not open file %s for saving spatial S3 distribution! %s: A name for the file for saving spatial S3 distribution is required! %s: Could not open file %s for intensityevo output! %s: Could not open file %s for spectrum output! %s: Could not open %s for intensity reflection spectrum! %s: Could not open %s for intensity transmission spectrum! %s: Could not open %s for checking spectra! Random number: 1 Random number: 0 %s: (No valid grating subtype found). %s: Impossible apodization event occurred.%s: (Please check grating initialization.)%s: Minimum layer thickness at maximum recursion depth: %s: t2=%f [nm] %s: Fractal grating length calculated as L=%e [m] %s: Based on fractal recursion of %d out of a maximum of %d levels. %s: Error: Specified grating type is invalid. ...%2d percent finished... ETA: %s%16.12e %16.12e %16.12e %16.12e %16.12e %16.12e %-10.8f %-10.8f Writing spatial field evolution to file. %16.12e %16.12e %16.12e %16.12e %16.12e %16.12e %16.12e %16.12e %16.12e %s: Could not write to file %s! Writing spatial evolution of Stokes parameters to file. %16.12e %16.12e %s: Could not write to file %s, %s, %s, or %s! %s: Unknown field evolution flag. %s: (This cannot happen) %s: Saving intensity evolution at lambda=%8.4e %s: Could not open file %s for output! %16.12e %16.12e %16.12e %16.12e %16.12e %16.12e %16.12e ...done. Elapsed execution time: %d s Program execution closed %sSummary of intra-grating intensities: The maximum intensity %1.4e [W/m^2] (%1.4f GW/cm^2) was detected in layer %ld. The maximum intensity was detected at a transmitted intensity of %1.4e [W/m^2] (%1.4f GW/cm^2), and at a transmitted normalized ellipticity of S3/S0=%1.4f. (where S3/S0=1 for LCP, and -1 for RCP).At this state, the calculated optical intensity incident to the crystal was %1.4e [W/m^2] (%1.4f GW/cm^2), or %1.1f percent of the maximum intra-grating optical intensity. The calculated normalized incident ellipticity was %1.4f. The intensity transmission was for this state %1.1f percent. %s: Could not open %s for intensity log! Maximum intensity %1.4e [W/sq.m] (%1.4f GW/sq.cm) was detected in layer %ld. 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