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| pro get_espec wavemin = 3700. wavemax = 5500.
;;;;;;;;;;;;;;;; read in models ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; niw = 1941 nmod = 25000 wavein = make_array(niw,/float) fluxin = make_array(niw,nmod,/float)
openr,lun,'wave.txt',/Get_lun readf,lun,wavein free_lun,lun openr,lun,'spec_vdisp.txt',/Get_lun readf,lun,fluxin free_lun,lun
;;;;;;;;;;;;;;;;; set the range of wavelength for PCA analysis ;;;;;; indespec = where(wavein ge wavemin and wavein le wavemax) wave = wavein[indespec] flux = fluxin[indespec,*] flag = replicate(1.,n_elements(wave))
;;;;;;;;;;;;;;;;; set mask regions;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; maskem = -9L ;------------------------------------------------------------------------------ ; Mask out emission lines ; OII OII H8 NeIII Hg Hd Hb OIII em = [3726.03, 3728.82, 3889.05, 3869.06, 4101.73, 4340.46, 4861.33, 4959.91, $ ; OIII He I OI NII Ha NII SII SII 5006.84, 5875.67, 6300.30, 6548.04, 6562.82, 6583.41, 6716.44, 6730.81] emmaskw = 500. dz = emmaskw / 3.e5 ; clipping interval for iem = 0, n_elements(em) - 1 do begin maskout = where(wave gt em[iem]*(1-dz) and wave lt em[iem]*(1+dz)) if maskout[0] ne -1 then maskem = [maskem, maskout] endfor maskem = maskem[1:n_elements(maskem)-1] flag[maskem] = 0. indok = where(flag ne 0., ctpix, compl = compl) wave_espec = wave[indok] flux_espec = flux[indok,*]
;;;;;;;;;;;;;;;;;;; normalize models and subtract mean;;;;;;;;;;;;;;;;;;;;;;;;;; flux_norm = make_array(ctpix,nmod,/float) for ii = 0L,nmod-1 do begin norm_mod = mean(flux_espec[*,ii]) flux_norm[*,ii] = flux_espec[*,ii]/norm_mod endfor meanarr = TOTAL(flux_norm,2,/nan) / double(nmod)
openw,lun,'flux.txt',/Get_lun for ii=0,nmod-1 do printf,lun,flux_norm[*,ii],format='(1601(F10.3))' free_lun,lun
for ii = 0L,nmod-1 do flux_norm[*,ii] = flux_norm[*,ii]-meanarr
;;;;;;;;;;;;;;;;;;; do PCA ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; help,flux_norm A=flux_norm # transpose(flux_norm) ;covariance matrix help,A A=A/(nmod-1) trired, A, D, E ,/double triql, D, E, A, /double index=sort(D) D=D[index] E=E[index] A=A[*,index] W=100.0 * reverse(D)/total(D) eigenval = reverse(D) espec =reverse(transpose(A)) ;espec=A ;espec =reverse(A) print,max(D) percentages=W print,'max(D)',max(D),'min(D)',min(D) help,espec,eigenval,percentages print,espec[0,*]
;espec=vwpca_svd(flux_norm,variances=variances,pcs=pcs,evalues=evalues)
;;;;;;;;;;;;;;;;;;;;;;;; output eigenspecta ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; wave_out = wave espec1_out = replicate(-99., n_elements(wave)) espec1_out[indok] = espec[0,*] espec2_out = replicate(-99., n_elements(wave)) espec2_out[indok] = espec[1,*] espec3_out = replicate(-99., n_elements(wave)) espec3_out[indok] = espec[2,*] espec4_out = replicate(-99., n_elements(wave)) espec4_out[indok] = espec[3,*] espec5_out = replicate(-99., n_elements(wave)) espec5_out[indok] = espec[4,*] espec6_out = replicate(-99., n_elements(wave)) espec6_out[indok] = espec[5,*] espec7_out = replicate(-99., n_elements(wave)) espec7_out[indok] = espec[6,*] espec8_out = replicate(-99., n_elements(wave)) espec8_out[indok] = espec[7,*] espec9_out = replicate(-99., n_elements(wave)) espec9_out[indok] = espec[8,*] espec10_out = replicate(-99., n_elements(wave)) espec10_out[indok] = espec[9,*]
meanarr_out = replicate(-99., n_elements(wave)) meanarr_out[indok] = meanarr help,meanarr_out,meanarr,espec10_out
espec_out=replicate(-99., n_elements(wave)) openw,lun,'eigenvect.txt',/Get_lun for ii=0,1600 do begin espec_out[indok] = espec[*,ii] printf,lun,espec_out,format='(1721(F10.3))' end free_lun,lun openw,lun,'espec.txt',/get_lun printf,lun,wave_out,format='(1721(F10.3))' printf,lun,meanarr_out,format='(1721(F10.3))' printf,lun,espec1_out,format='(1721(F10.3))' printf,lun,espec2_out,format='(1721(F10.3))' printf,lun,espec3_out,format='(1721(F10.3))' printf,lun,espec4_out,format='(1721(F10.3))' printf,lun,espec5_out,format='(1721(F10.3))' printf,lun,espec6_out,format='(1721(F10.3))' printf,lun,espec7_out,format='(1721(F10.3))' printf,lun,espec8_out,format='(1721(F10.3))' printf,lun,espec9_out,format='(1721(F10.3))' printf,lun,espec10_out,format='(1721(F10.3))' free_lun,lun
meanarr_out[compl] = 'Nan' espec1_out[compl] = 'Nan' espec2_out[compl] = 'Nan' espec3_out[compl] = 'Nan' espec4_out[compl] = 'Nan' espec5_out[compl] = 'Nan' espec6_out[compl] = 'Nan' espec7_out[compl] = 'Nan'
set_plot, 'PS' device, FILE='pcs.eps', /ENCAPSULATED device,xsize=21 device,ysize=30 ;draw mean spec plot,wave_out,meanarr_out,Thick=3,XRange=[3700,5500],YRange=[0.0,1.5],$ xstyle=1,ystyle=1,position=[0.1,0.8,0.9,0.9] XYouts,0.15,0.87,'mean spec',/Normal ;draw pc1 plot,wave_out,espec1_out,Thick=3,XRange=[3700,5500],YRange=[-0.06,0.06],$ xstyle=1,ystyle=1,position=[0.1,0.7,0.9,0.8],/noerase XYouts,0.15,0.77,'pc1',/Normal ;draw pc2 plot,wave_out,espec2_out,Thick=3,XRange=[3700,5500],YRange=[-0.10,0.15],$ xstyle=1,ystyle=1,position=[0.1,0.6,0.9,0.7],/noerase XYouts,0.15,0.67,'pc2',/Normal ;draw pc3 plot,wave_out,espec3_out,Thick=3,XRange=[3700,5500],YRange=[-0.06,0.08],$ xstyle=1,ystyle=1,position=[0.1,0.5,0.9,0.6],/noerase XYouts,0.15,0.57,'pc3',/Normal ;draw pc4 plot,wave_out,espec4_out,Thick=3,XRange=[3700,5500],YRange=[-0.10,0.15],$ xstyle=1,ystyle=1,position=[0.1,0.4,0.9,0.5],/noerase XYouts,0.15,0.47,'pc4',/Normal ;draw pc5 plot,wave_out,espec5_out,Thick=3,XRange=[3700,5500],YRange=[-0.15,0.15],$ xstyle=1,ystyle=1,position=[0.1,0.3,0.9,0.4],/noerase XYouts,0.15,0.37,'pc5',/Normal ;draw pc6 plot,wave_out,espec6_out,Thick=3,XRange=[3700,5500],YRange=[-0.20,0.10],$ xstyle=1,ystyle=1,position=[0.1,0.2,0.9,0.3],/noerase XYouts,0.15,0.27,'pc6',/Normal ;draw pc7 plot,wave_out,espec7_out,Thick=3,XRange=[3700,5500],YRange=[-0.10,0.10],$ xstyle=1,ystyle=1,position=[0.1,0.1,0.9,0.2],/noerase XYouts,0.15,0.17,'pc7',/Normal !p.font=4 XYOuts, 0.03, 0.4,'Normalized Flux Density f',/Norm,Charsize=1.5,Orientation=90 XYOuts, 0.4, 0.06, /Normal,'Wavelength(A)', Charsize=1.5 device, /CLOSE_FILE device,ENCAPSULATED=0 end
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