FORTRAN Generation
(/./ftp/cats/J/ApJ/903/24)

Conversion of standardized ReadMe file for file /./ftp/cats/J/ApJ/903/24 into FORTRAN code for loading all data files into arrays.

Note that special values are assigned to unknown or unspecified numbers (also called NULL numbers); when necessary, the coordinate components making up the right ascension and declination are converted into floating-point numbers representing these angles in degrees.



      program load_ReadMe
C=============================================================================
C  F77-compliant program generated by readme2f_1.81 (2015-09-23), on 2026-Sep-12
C=============================================================================
*  This code was generated from the ReadMe file documenting a catalogue
*  according to the "Standard for Documentation of Astronomical Catalogues"
*  currently in use by the Astronomical Data Centers (CDS, ADC, A&A)
*  (see full documentation at URL http://vizier.u-strasbg.fr/doc/catstd.htx)
*  Please report problems or questions to   
C=============================================================================

      implicit none
*  Unspecified or NULL values, generally corresponding to blank columns,
*  are assigned one of the following special values:
*     rNULL__    for unknown or NULL floating-point values
*     iNULL__    for unknown or NULL   integer      values
      real*4     rNULL__
      integer*4  iNULL__
      parameter  (rNULL__=--2147483648.)  	! NULL real number
      parameter  (iNULL__=(-2147483647-1))	! NULL int  number
      integer    idig			! testing NULL number

C=============================================================================
Cat. J/ApJ/903/24 Ly{alpha} emitters and QSOs in COMSOS and EGS fields (Mukae+, 2020)
*================================================================================
*Cosmological 3D HI Map with HETDEX Ly{alpha} Emitters and eBOSS QSOs at
*z=2; IGM-Galaxy/QSO Connection and a ~40Mpc Scale Giant HII Bubble Candidate
*    Mukae S., Ouchi M., Hill G.J., Gebhardt K., Cooper E.M., Jeong D.,
*    Saito S., Fabricius M., Gawiser E., Ciardullo R., Farrow D., Davis D.,
*    Zeimann G., Finkelstein S.L., Gronwall C., Liu C., Zhang Y., Byrohl C., Ono
*    Y., Schneider D.P., Jarvis M.J., Casey C.M., Mawatari K.
*   <Astrophys. J., 903, 24 (2020)>
*   =2020ApJ...903...24M
C=============================================================================

C  Internal variables

      integer*4 i__

c - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - 

C  Declarations for 'table2.dat'	! HETDEX LAEs in the COSMOS Field

      integer*4 nr__
      parameter (nr__=27)	! Number of records
      character*64 ar__   	! Full-size record

C  J2000 position composed of: RAh RAm RAs DE- DEd DEm DEs
      real*8        RAdeg      (nr__) ! (deg) Right Ascension J2000
      real*8        DEdeg      (nr__) ! (deg)     Declination J2000
C  ---------------------------------- ! (position vector(s) in degrees)

      character*26  HETDEX     (nr__) ! Identifier
      integer*4     RAh        (nr__) ! (h) [10] Hour of right ascension (J2000)
      integer*4     RAm        (nr__) ! (min) [0/1] Minute of right ascension (J2000)
      real*4        RAs        (nr__) ! (s) Second of right ascension (J2000)
      character*1   DE_        (nr__) ! [+] Sign of declination (J2000)
      integer*4     DEd        (nr__) ! (deg) [2] Degree of declination (J2000)
      integer*4     DEm        (nr__) ! (arcmin) [11/22] Arcminute of declination (J2000)
      real*4        DEs        (nr__) ! (arcsec) Arcsecond of declination (J2000)
      real*4        z          (nr__) ! [2.09/2.51] Redshift at Ly{alpha} emission line
      real*4        Lum        (nr__) ! [6.34/24.7] Luminosity at Ly{alpha} (10^42^erg/s)

c - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - 

C  Declarations for 'table3.dat'	! HETDEX LAEs in the EGS field

      integer*4 nr__1
      parameter (nr__1=26)	! Number of records
      character*69 ar__1  	! Full-size record

C  J2000 position composed of: RAh RAm RAs DE- DEd DEm DEs
      real*8        RAdeg_1    (nr__1) ! (deg) Right Ascension J2000
      real*8        DEdeg_1    (nr__1) ! (deg)     Declination J2000
C  ---------------------------------- ! (position vector(s) in degrees)

      character*26  HETDEX_1   (nr__1) ! Identifier
      integer*4     RAh_1      (nr__1) ! (h) [14] Hour of right ascension (J2000)
      integer*4     RAm_1      (nr__1) ! (min) [17/23] Minute of right ascension (J2000)
      real*4        RAs_1      (nr__1) ! (s) Second of right ascension (J2000)
      character*1   DE__1      (nr__1) ! [+] Sign of declination (J2000)
      integer*4     DEd_1      (nr__1) ! (deg) [52/53] Degree of declination (J2000)
      integer*4     DEm_1      (nr__1) ! (arcmin) Arcminute of declination (J2000)
      real*4        DEs_1      (nr__1) ! (arcsec) Arcsecond of declination (J2000)
      real*4        z_1        (nr__1) ! [2.05/2.54] Redshift at Ly{alpha} emission line
      real*4        Lum_1      (nr__1) ! [6.33/39.3] Luminosity at Ly{alpha} (10^42^erg/s)
      character*4   Label      (nr__1) ! LAE(1-4) reside in the QSO overdensity, EGS-QO1

c - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - 

C  Declarations for 'table4.dat'	! Foreground QSOs in the EGS field

      integer*4 nr__2
      parameter (nr__2=78)	! Number of records
      character*47 ar__2  	! Full-size record

C  J2000 position composed of: RAh RAm RAs DE- DEd DEm DEs
      real*8        RAdeg_2    (nr__2) ! (deg) Right Ascension J2000
      real*8        DEdeg_2    (nr__2) ! (deg)     Declination J2000
C  ---------------------------------- ! (position vector(s) in degrees)

      character*15  QSO        (nr__2) ! QSO identifier (1)
      integer*4     RAh_2      (nr__2) ! (h) [14] Hour of right ascension (J2000)
      integer*4     RAm_2      (nr__2) ! (min) [14/25] Minute of right ascension (J2000)
      real*4        RAs_2      (nr__2) ! (s) Second of right ascension (J2000)
      character*1   DE__2      (nr__2) ! [+] Sign of declination (J2000)
      integer*4     DEd_2      (nr__2) ! (deg) [52/53] Degree of declination (J2000)
      integer*4     DEm_2      (nr__2) ! (arcmin) Arcminute of declination (J2000)
      real*4        DEs_2      (nr__2) ! (arcsec) Arcsecond of declination (J2000)
      real*4        z_2        (nr__2) ! [2.05/2.55] Spectroscopic redshift
*Note (1): Identifier built as follows: Plate-MJD-Fiber from the SDSS
*    quasar catalog DR14 (Paris, 2018, VII/286)

c - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - 

C  Declarations for 'table5.dat'	! Background QSOs in the EGS field

      integer*4 nr__3
      parameter (nr__3=43)	! Number of records
      character*53 ar__3  	! Full-size record

C  J2000 position composed of: RAh RAm RAs DE- DEd DEm DEs
      real*8        RAdeg_3    (nr__3) ! (deg) Right Ascension J2000
      real*8        DEdeg_3    (nr__3) ! (deg)     Declination J2000
C  ---------------------------------- ! (position vector(s) in degrees)

      character*15  QSO_1      (nr__3) ! QSO identifier (1)
      integer*4     RAh_3      (nr__3) ! (h) [14] Hour of right ascension (J2000)
      integer*4     RAm_3      (nr__3) ! (min) [14/25] Minute of right ascension (J2000)
      real*4        RAs_3      (nr__3) ! (s) Second of right ascension (J2000)
      character*1   DE__3      (nr__3) ! [+] Sign of declination (J2000)
      integer*4     DEd_3      (nr__3) ! (deg) [52/53] Degree of declination (J2000)
      integer*4     DEm_3      (nr__3) ! (arcmin) Arcminute of declination (J2000)
      real*4        DEs_3      (nr__3) ! (arcsec) Arcsecond of declination (J2000)
      real*4        z_3        (nr__3) ! [2.15/3.11] Spectroscopic redshift
      real*4        gmag       (nr__3) ! (mag) [18.2/22] g-band magnitude in AB system
*Note (1): Identifier built as follows: Plate-MJD-Fiber from the SDSS
*    quasar catalog DR14 (Paris, 2018, VII/286)

C=============================================================================

C  Loading file 'table2.dat'	! HETDEX LAEs in the COSMOS Field

C  Format for file interpretation

    1 format(
     +  A26,1X,I2,1X,I2,1X,F5.2,1X,A1,1X,I2,1X,I2,1X,F5.2,1X,F5.3,1X,
     +  F5.2)

C  Effective file loading

      open(unit=1,status='old',file=
     +'table2.dat')
      write(6,*) '....Loading file: table2.dat'
      do i__=1,27
        read(1,'(A64)')ar__
        read(ar__,1)
     +  HETDEX(i__),RAh(i__),RAm(i__),RAs(i__),DE_(i__),DEd(i__),
     +  DEm(i__),DEs(i__),z(i__),Lum(i__)
        RAdeg(i__) = rNULL__
        DEdeg(i__) = rNULL__
c  Derive coordinates RAdeg and DEdeg from input data
c  (RAdeg and DEdeg are set to rNULL__ when unknown)
        if(RAh(i__) .GT. -180) RAdeg(i__)=RAh(i__)*15.
        if(RAm(i__) .GT. -180) RAdeg(i__)=RAdeg(i__)+RAm(i__)/4.
        if(RAs(i__) .GT. -180) RAdeg(i__)=RAdeg(i__)+RAs(i__)/240.
        if(DEd(i__) .GE. 0) DEdeg(i__)=DEd(i__)
        if(DEm(i__) .GE. 0) DEdeg(i__)=DEdeg(i__)+DEm(i__)/60.
        if(DEs(i__) .GE. 0) DEdeg(i__)=DEdeg(i__)+DEs(i__)/3600.
        if(DE_(i__).EQ.'-'.AND.DEdeg(i__).GE.0) DEdeg(i__)=-DEdeg(i__)
c    ..............Just test output...........
        write(6,1)
     +  HETDEX(i__),RAh(i__),RAm(i__),RAs(i__),DE_(i__),DEd(i__),
     +  DEm(i__),DEs(i__),z(i__),Lum(i__)
        write(6,'(6H Pos: 2F8.4)') RAdeg(i__),DEdeg(i__)
c    .......End.of.Just test output...........
      end do
      close(1)

C=============================================================================

C  Loading file 'table3.dat'	! HETDEX LAEs in the EGS field

C  Format for file interpretation

    2 format(
     +  A26,1X,I2,1X,I2,1X,F5.2,1X,A1,1X,I2,1X,I2,1X,F5.2,1X,F5.3,1X,
     +  F5.2,1X,A4)

C  Effective file loading

      open(unit=1,status='old',file=
     +'table3.dat')
      write(6,*) '....Loading file: table3.dat'
      do i__=1,26
        read(1,'(A69)')ar__1
        read(ar__1,2)
     +  HETDEX_1(i__),RAh_1(i__),RAm_1(i__),RAs_1(i__),DE__1(i__),
     +  DEd_1(i__),DEm_1(i__),DEs_1(i__),z_1(i__),Lum_1(i__),
     +  Label(i__)
        RAdeg_1(i__) = rNULL__
        DEdeg_1(i__) = rNULL__
c  Derive coordinates RAdeg_1 and DEdeg_1 from input data
c  (RAdeg_1 and DEdeg_1 are set to rNULL__ when unknown)
        if(RAh_1(i__) .GT. -180) RAdeg_1(i__)=RAh_1(i__)*15.
        if(RAm_1(i__) .GT. -180) RAdeg_1(i__)=RAdeg_1(i__)+RAm_1(i__)/4.
        if(RAs_1(i__) .GT. -180) RAdeg_1(i__)=RAdeg_1(i__)+RAs_1(i__)/240.
        if(DEd_1(i__) .GE. 0) DEdeg_1(i__)=DEd_1(i__)
        if(DEm_1(i__) .GE. 0) DEdeg_1(i__)=DEdeg_1(i__)+DEm_1(i__)/60.
        if(DEs_1(i__) .GE. 0) DEdeg_1(i__)=DEdeg_1(i__)+DEs_1(i__)/3600.
        if(DE__1(i__).EQ.'-'.AND.DEdeg_1(i__).GE.0) DEdeg_1(i__)=-DEdeg_1(i__)
c    ..............Just test output...........
        write(6,2)
     +  HETDEX_1(i__),RAh_1(i__),RAm_1(i__),RAs_1(i__),DE__1(i__),
     +  DEd_1(i__),DEm_1(i__),DEs_1(i__),z_1(i__),Lum_1(i__),
     +  Label(i__)
        write(6,'(6H Pos: 2F8.4)') RAdeg_1(i__),DEdeg_1(i__)
c    .......End.of.Just test output...........
      end do
      close(1)

C=============================================================================

C  Loading file 'table4.dat'	! Foreground QSOs in the EGS field

C  Format for file interpretation

    3 format(
     +  A15,1X,I2,1X,I2,1X,F5.2,1X,A1,1X,I2,1X,I2,1X,F5.2,1X,F5.3)

C  Effective file loading

      open(unit=1,status='old',file=
     +'table4.dat')
      write(6,*) '....Loading file: table4.dat'
      do i__=1,78
        read(1,'(A47)')ar__2
        read(ar__2,3)
     +  QSO(i__),RAh_2(i__),RAm_2(i__),RAs_2(i__),DE__2(i__),
     +  DEd_2(i__),DEm_2(i__),DEs_2(i__),z_2(i__)
        RAdeg_2(i__) = rNULL__
        DEdeg_2(i__) = rNULL__
c  Derive coordinates RAdeg_2 and DEdeg_2 from input data
c  (RAdeg_2 and DEdeg_2 are set to rNULL__ when unknown)
        if(RAh_2(i__) .GT. -180) RAdeg_2(i__)=RAh_2(i__)*15.
        if(RAm_2(i__) .GT. -180) RAdeg_2(i__)=RAdeg_2(i__)+RAm_2(i__)/4.
        if(RAs_2(i__) .GT. -180) RAdeg_2(i__)=RAdeg_2(i__)+RAs_2(i__)/240.
        if(DEd_2(i__) .GE. 0) DEdeg_2(i__)=DEd_2(i__)
        if(DEm_2(i__) .GE. 0) DEdeg_2(i__)=DEdeg_2(i__)+DEm_2(i__)/60.
        if(DEs_2(i__) .GE. 0) DEdeg_2(i__)=DEdeg_2(i__)+DEs_2(i__)/3600.
        if(DE__2(i__).EQ.'-'.AND.DEdeg_2(i__).GE.0) DEdeg_2(i__)=-DEdeg_2(i__)
c    ..............Just test output...........
        write(6,3)
     +  QSO(i__),RAh_2(i__),RAm_2(i__),RAs_2(i__),DE__2(i__),
     +  DEd_2(i__),DEm_2(i__),DEs_2(i__),z_2(i__)
        write(6,'(6H Pos: 2F8.4)') RAdeg_2(i__),DEdeg_2(i__)
c    .......End.of.Just test output...........
      end do
      close(1)

C=============================================================================

C  Loading file 'table5.dat'	! Background QSOs in the EGS field

C  Format for file interpretation

    4 format(
     +  A15,1X,I2,1X,I2,1X,F5.2,1X,A1,1X,I2,1X,I2,1X,F5.2,1X,F5.3,1X,
     +  F5.2)

C  Effective file loading

      open(unit=1,status='old',file=
     +'table5.dat')
      write(6,*) '....Loading file: table5.dat'
      do i__=1,43
        read(1,'(A53)')ar__3
        read(ar__3,4)
     +  QSO_1(i__),RAh_3(i__),RAm_3(i__),RAs_3(i__),DE__3(i__),
     +  DEd_3(i__),DEm_3(i__),DEs_3(i__),z_3(i__),gmag(i__)
        RAdeg_3(i__) = rNULL__
        DEdeg_3(i__) = rNULL__
c  Derive coordinates RAdeg_3 and DEdeg_3 from input data
c  (RAdeg_3 and DEdeg_3 are set to rNULL__ when unknown)
        if(RAh_3(i__) .GT. -180) RAdeg_3(i__)=RAh_3(i__)*15.
        if(RAm_3(i__) .GT. -180) RAdeg_3(i__)=RAdeg_3(i__)+RAm_3(i__)/4.
        if(RAs_3(i__) .GT. -180) RAdeg_3(i__)=RAdeg_3(i__)+RAs_3(i__)/240.
        if(DEd_3(i__) .GE. 0) DEdeg_3(i__)=DEd_3(i__)
        if(DEm_3(i__) .GE. 0) DEdeg_3(i__)=DEdeg_3(i__)+DEm_3(i__)/60.
        if(DEs_3(i__) .GE. 0) DEdeg_3(i__)=DEdeg_3(i__)+DEs_3(i__)/3600.
        if(DE__3(i__).EQ.'-'.AND.DEdeg_3(i__).GE.0) DEdeg_3(i__)=-DEdeg_3(i__)
c    ..............Just test output...........
        write(6,4)
     +  QSO_1(i__),RAh_3(i__),RAm_3(i__),RAs_3(i__),DE__3(i__),
     +  DEd_3(i__),DEm_3(i__),DEs_3(i__),z_3(i__),gmag(i__)
        write(6,'(6H Pos: 2F8.4)') RAdeg_3(i__),DEdeg_3(i__)
c    .......End.of.Just test output...........
      end do
      close(1)

C=============================================================================
      stop
      end