SIMPLE = T / file does conform to FITS standard BITPIX = -32 / number of bits per data pixel NAXIS = 1 / number of data axes NAXIS1 = 1469 / length of data axis 1 EXTEND = T / FITS dataset may contain extensions TT14 = 'IMA/SERIES MULT' / TT History TT13 = 'IMA/SERIES LOPT' / TT History TT12 = 'IMA/SERIES MULT' / TT History TT11 = 'IMA/SERIES MEDIANY' / TT History TT10 = 'IMA/SERIES WINDOW' / TT History EXPOSURE= 600. / [second] Single shot duration DATE-OBS= '2017-10-14T21:12:14.645' / [ISO 8601] Start of exposure. FITS standarDATE-END= '2017-10-14T22:02:59.429' / [ISO 8601] End of exposure. FITS standard MJD-OBS = 58041.383502836 / [d] Start of exposure. Modified JD=JD-2400000 TT8 = 'IMA/STACK ADD' / TT History TT9 = ' 99 99 99 99 99 ' / TT History TT7 = 'IMA/SERIES TRANS' / TT History TT6 = 'IMA/SERIES TRANS' / TT History TT5 = 'IMA/SERIES SMILEX' / TT History TT4 = 'IMA/SERIES TILT' / TT History TT3 = 'IMA/SERIES DIV' / TT History TT2 = 'IMA/SERIES SUB' / TT History CUTSMODE= 1004.56 / [adu] Mode from cuts analysis CUTSMIN = 22126. / [adu] Min from cuts analysis CUTSMAX = 968. / [adu] Max from cuts analysis CUTSCONT= 1. / [adu] Contrast for cuts analysis MIPS-HI = 1321 / [ADU] High cut MIPS-LO = 947 / [ADU] Low cut TT1 = 'IMA/SERIES CUTS' / TT History BIN1 = 1 GPS-DATE= 0 / 1 if datation is derived from GPS, else 0 CAMERA = 'SBIG ST-8 3 CCD Camera Kaf1600 libsbig' OBJNAME = 'X Cyg ' / Object observed RA = 310.851 / [degres] Object Right Ascension DEC = 35.5878 / [degres] Object Declination APTDIA = 0.305 / [m: meter] Telescop diameter SITELAT = 'N43d25m57s0' / [degres, minutes, seconds] Observatory latitudeSITEELEV= 260. / [m: meter] Observatory elevation above the sea CCD_TEMP= -20.42 / [degres Celsius] Actual CCD temperature EQUINOX = 'now ' / Coordinates equinox YPIXSZ = 9. / [micron] Pixel height TELESCOP= 'SCT 0.3m' / Telescop name EQUIPMEN= 'LHIRES3#151 2400 g/mm' / System which created data via the camera OBSERVER= 'Benjamin MAUCLAIRE' / Observer name SITENAME= 'O.V.A. ' / Observatory name XPIXSZ = 9. / [micron] Pixel width SITELONG= 'E05d42m10s0' / [degres, minutes, seconds] Observatory longitudFOCLEN = 3.05 / [m: meter] Resulting focal length of the telescSPC_TILT= -0.356198 / [degres] Tilt angle SPC_XROT= 765 / [pixel] Tilt x center SPC_YROT= 510 / [pixel] Tilt y center SPC_YBIN= 453 / [pixel] Y heigh for binning SPC_TILX= 765 / [pixel] Tilt X center SPC_TILY= 510 / [pixel] Tilt Y center SPC_SLX1= 764.672 / [pixel] ycenter smilex SPC_SLX2= 5.575292E-05 / [real] coef deg2 smilex SPC_REGH= 'Yes ' / Horizontal reg: 134383489.669+-54.670939*T MID-JD = 2458041.40112142 / [day] Heliocentric Julian Date at mid-exposure EXPTIME = 3045. / [second] Total duration: dobsN-dobs1+1 exposureCREATOR = 'SpcAudACE 4.3 - 20/03/2016' / Software that create this FITS file SPC_NBF = 5 / Number of single shots SPC_COSM= 'removed, linear interpolation' / Cosmics correction method SPC_HBIN= 37. / [pixel] Binning thickness CRVAL1 = 6526.13250134 / [angstrom] Wavelength at reference pixel CDELT1 = 0.11492688206 / [Angstrom/pixel] CRPIX1 = 1. / [pixel] Reference pixel CUNIT1 = 'angstrom' / Wavelength unit CTYPE1 = 'Wavelength' SPC_RESP= 12552. / Power of resolution at wavelength SPC_RESL SPC_RESL= 6598.953 / [angstrom] Wavelength where power of resolutionSPC_RMS = 0.338549015782 / [angstrom] Wavelength RMS updated with telluricSPC_NORM= 'Rescaling to local middle continuum' / Process used for the continuumSPC_RMSO= 0.338549015782 / [Angstrom] RMS computed with telluric lines SPC_MDEC= -0.102719015556 / [Angstrom] Mean shift from tellruic lines SPC_CALO= 'yes (method 1)' / Yes if spectrum has been calibrated with tellurBSS_COSM= 'removed, linear interpolation' / Cosmics correction method END ?s?|U ?uR?m?f*3?`Z1?X?S?P+?Nf?Sy?&L?v?&L?j?j?k??.?z??L??Z?_????w?/?=?L? w?z?E???Ԩ?Ԩ??̨?M??z? ?[?Z??k??J?>??_>?m ?m??M????wh?zX?}?{?=? w?.w??\-?FK? ?}!J?}??L?j?K>t>᩹>>y>4>> >">#>Mb>>3>s>/K>>d>e? ?"?8?Lv?d?v ??? ???a?|?e??Y\?z?w??I\?B?g?X?M??k??x:?r(?h ?g0?f*3?d+?^!?\]?c~?m,?z?w?Cz???/?j?T?{] ?|)J?~ ??ɗ?.L?=?b?M?k??)??,/??\?\?$/?M??-?h?ܧ?_>?I\?B?[???yAH?tt?q)?mb?ln?gQ?_?^M?g"3?o ?y2?\-?>L??5?o??L???Z?-??/??u ?B?̨??g>??v??`?ܧ?g?&L?J?%?B?|l????N?H???} ????w=?.L??h?[?{Nw?m?dW`?^/?U?O:?I ????N?0?m??z?:?`????=??M???%?Cz??.L?j?~'?~i?|?{z:?y?u?te?xf?~ ?yZ???}>w?u ?vYG?zX?yX?=? ?j??J?k?k?/?l?s??H?]?]?N??N?|l?̨????[?Q\???????m?W?k??M?,?f?̨?{??Q\??FK?|)J?st?lb?fd?a?YM?U?V5x?^?iD?w?~?\-?E?=?}M?|r;?|,?}x?.w?Z?o?nr?nPT?n$?qs?t?t)?uaG?v8?u?v-?vV?vYG?wQH?x?uaG?t.?v?w?v?u~t?s(V?u?vf?r?t?t)?w?wg?v8?v?r>?o ?q)?w?w?x?ze ?xW?w?yO?y?|?{?t.?t)?t V?r?uV?vvu?t?q ?p ?p?n6?n3'?os?o?ryF?v-?u9?v8?wQH?zVv?z*?w?x?y?w4?te?u9?u?y?uo?t ?v?t?sb?r?s6?r7?qs?qU?pr?qs?q?s?s?q ?kq?mu?lQ?kq?j?l5?r\?s ?sE?tZ?vJ?ue?uaG?v?v-?s8?ln?a?[!?R?I?B`?=?8?3^?8?C?S0K?c?m۟?q?q?rj?s8?pr?t?w4?qU?jC?ixS?i?n?mI?n ?oe?p1?sE?rj?r!?q?r0U?q)?nE?jpR?k4?kD?mI?q(?q?o˟?j?f~?k?j?l?qF?oE?m?m?m?m?l?l?nm?n?os?r?r>?tL?vV?r?s?t V?t?vg?vV?wQH?w?qd?oE?p#'?oe?n6?k?g?i/b?g?j 5?mu?m;&?lq?n6?oe?qd?q6?s ?sE?m۟?nӠ?n^?l?m,?nӠ?mu?j?khS?o+'?nm?o?r>?r?sqG?t)?tiG?rM?o6?n$?nc?r!?p?pz?qs?u?sT?p ?o?od?q(?o?o?m?lC&?m;&?gk$?`?Uw?J ?GGV?A?;?1+?+?-?40@?D6?TEx?^?dW`?el?cP?a?e]?h ?h?f~?d}?b#?^?^!??\??Z ?])??aC?j'a?ln?pc?r?mr?o6?p?qF?l?m?o?n?oHT?r?r?t?re?q8T?t?s6?r?p#'?n?u?t)?t V?sE?qE?rM?q?r0U?u ?re?tZ?q6?p?s ?r7?u ?sE?s?r?v-?u?u?uaG?te?s ?s6?r?r ?sT?r?qF?ue?uR?tZ?v?u?t?s (?r0U?p7?qr?r?tZ?u?uV?se?p ?rj?p@U?pl?s ?sb?r?u~t?v?t ?ryF?r?t ?u ?rM?t?s ?q8T?qF?pà?n6?ot?n?q?p?rM?s?t ?r?p?q6?p?r?sT?p?pl?pl?o+'?pr?p7?qE?m;&?p#'?r?r(?pF?q ?qs?st?r7?r?p#'?q(?r7?t=