  COVER INFORMATION 

 Station:    SHANGHAI  (Code Sh ) 
 Experiment: Looking for changes in the jet structure of the z=5.3 blazar J1026+2542
 Exp. Code:  EF024A  


Schedule Version:       1.00
Processed by SCHED version:  11.00  Release of Feb. 15, 2013

PI:       Sandor Frey

Address:  FOMI Satellite Geodetic Observatory
          P.O. Box 585
          H-1592 Budapest
          Hungary

Phone:    +36 27 200802
EMAIL:    frey@sgo.fomi.hu
Fax:      +36 27 200933
Phone during observation: +36 27 200802

Observing mode: 6 cm 1 Gb/s

Notes:
 
 
 

Schedule for SHANGHAI  (Code Sh )                                   Page   2
               Looking for changes in the jet structure of the z=5.3 blazar J1026+2542
  UP:  D => Below limits;  H => Below horizon mask;  W => still slewing at end;  blank => Up.
  Early: Seconds between end of slew and start.   Dwell: On source seconds. 
  Disk: GBytes recorded to this point.
  TPStart:  Recording start time.  Frequencies are LO sum (band edge).
  SYNC: Time correlator is expected to sync up.
----------------------------------------------------------------------------------------
Start UT  Source               Start / Stop                 Early    Disk   TPStart
Stop UT                  LST      EL    AZ   HA  UP   ParA  Dwell   GBytes    SYNC
----------------------------------------------------------------------------------------

 --- Tue  28 May 2013   Day 148 ---

 Next scan frequencies:  4942.49  4942.49  4942.49  4942.49  4974.49  4974.49  4974.49  4974.49
                         5006.49  5006.49  5006.49  5006.49  5038.49  5038.49  5038.49  5038.49
 Next BBC frequencies:    742.49   742.49   742.49   742.49   774.49   774.49   774.49   774.49
                          806.49   806.49   806.49   806.49   838.49   838.49   838.49   838.49
 Next scan bandwidths:     16.00    16.00    16.00    16.00    16.00    16.00    16.00    16.00
                           16.00    16.00    16.00    16.00    16.00    16.00    16.00    16.00

12 40 00  J0854+2006   13 09 40  32.4 275.3  4.2      65.2     0        0   12 40 00
12 52 00  =0851+202    13 21 42  29.8 276.6  4.4      64.9   720       92   12 40 01

12 54 10  J1026+2542   13 23 52  51.0 273.3  2.9      71.5    90       92   12 54 10
13 08 30  =1023+259    13 38 15  47.9 274.9  3.2      71.1   860      203   12 54 11

13 09 10  J1026+2542   13 38 55  47.8 275.0  3.2      71.1    38      203   13 09 10
13 23 30  =1023+259    13 53 17  44.7 276.5  3.4      70.7   860      313   13 09 11

13 24 10  J1026+2542   13 53 57  44.6 276.6  3.4      70.7    38      313   13 24 10
13 38 30  =1023+259    14 08 20  41.5 278.1  3.7      70.1   860      423   13 24 11

13 39 10  J1026+2542   14 09 00  41.4 278.2  3.7      70.1    38      423   13 39 10
13 53 30  =1023+259    14 23 22  38.4 279.6  3.9      69.5   860      533   13 39 11

13 54 10  J1026+2542   14 24 02  38.2 279.7  3.9      69.4    38      533   13 54 10
14 08 30  =1023+259    14 38 25  35.2 281.1  4.2      68.7   860      644   13 54 11

14 09 10  J1026+2542   14 39 05  35.0 281.2  4.2      68.7    38      644   14 09 10
14 23 30  =1023+259    14 53 27  32.0 282.6  4.4      67.9   860      754   14 09 11

14 24 10  J1026+2542   14 54 07  31.9 282.7  4.4      67.9    38      754   14 24 10
14 38 30  =1023+259    15 08 30  28.9 284.1  4.7      67.1   860      864   14 24 11

14 39 10  J1026+2542   15 09 10  28.8 284.2  4.7      67.0    38      864   14 39 10
14 53 30  =1023+259    15 23 32  25.8 285.7  4.9      66.1   860      974   14 39 11

14 55 40  J1159+2914   15 25 42  45.9 281.3  3.4      74.1    92      974   14 55 40
15 07 40  =1156+295    15 37 44  43.4 282.3  3.6      73.4   720     1067   14 55 41

15 10 00  J1026+2542   15 40 05  22.4 287.3  5.2      65.0   101     1067   15 10 00
15 25 00  =1023+259    15 55 07  19.3 288.9  5.5      64.0   900     1182   15 10 01

15 25 40  J1026+2542   15 55 47  19.2 289.0  5.5      63.9    38     1182   15 25 40
15 40 00  =1023+259    16 10 10  16.3 290.5  5.7      62.8   860     1292   15 25 41

15 40 40  J1026+2542   16 10 50  16.2 290.6  5.7      62.8    38     1292   15 40 40
15 55 00  =1023+259    16 25 12  13.3 292.1  6.0      61.6   860     1403   15 40 41
Schedule for SHANGHAI  (Code Sh )                                   Page   3
               Looking for changes in the jet structure of the z=5.3 blazar J1026+2542
  UP:  D => Below limits;  H => Below horizon mask;  W => still slewing at end;  blank => Up.
  Early: Seconds between end of slew and start.   Dwell: On source seconds. 
  Disk: GBytes recorded to this point.
  TPStart:  Recording start time.  Frequencies are LO sum (band edge).
  SYNC: Time correlator is expected to sync up.
----------------------------------------------------------------------------------------
Start UT  Source               Start / Stop                 Early    Disk   TPStart
Stop UT                  LST      EL    AZ   HA  UP   ParA  Dwell   GBytes    SYNC
----------------------------------------------------------------------------------------

 --- Tue  28 May 2013   Day 148 ---

15 55 40  J1026+2542   16 25 52  13.2 292.2  6.0      61.6    38     1403   15 55 40
16 10 00  =1023+259    16 40 15  10.3 293.8  6.2      60.3   860     1513   15 55 41

16 10 40  J1026+2542   16 40 55  10.2 293.9  6.2      60.3    38     1513   16 10 40
16 25 00  =1023+259    16 55 17   7.4 295.5  6.5      59.0   860     1623   16 10 41

16 25 40  J1026+2542   16 55 57   7.3 295.6  6.5      58.9    38     1623   16 25 40
16 37 30  =1023+259    17 07 49   5.0 297.0  6.7      57.8   710     1714   16 25 41


SETUP FILE INFORMATION:
   NOTE: If DOPPLER, FREQ, or BW were used, see the individual scans for the final BBC settings.


 ======== Setup file: sess213.C1024
   Matching groups in /usr/local/sched/catalogs/freq.dat:
     sh6cm           Update freq. range AnTao 22Mar08

   Setup group:   10         Station: SHANGHAI          Total bit rate:  1024
   Format: MARK5B            Bits per sample: 2         Sample rate: 32.000
   Number of channels: 16    DBE type:                  Speedup factor:   1.00

   Disk used to record data.

   1st LO=   4200.00   4200.00   4200.00   4200.00   4200.00   4200.00   4200.00   4200.00
             4200.00   4200.00   4200.00   4200.00   4200.00   4200.00   4200.00   4200.00
   Net SB=         L         L         U         U         L         L         U         U
                   L         L         U         U         L         L         U         U
   IF SB =         U         U         U         U         U         U         U         U
                   U         U         U         U         U         U         U         U
   Pol.  =      RCP       LCP       RCP       LCP       RCP       LCP       RCP       LCP 
                RCP       LCP       RCP       LCP       RCP       LCP       RCP       LCP 
   BBC   =         1         2         1         2         3         4         3         4
                   5         6         5         6         7         8         7         8
   BBC SB=         L         L         U         U         L         L         U         U
                   L         L         U         U         L         L         U         U
   IF    =        C         A         C         A         C         A         C         A 
                  C         A         C         A         C         A         C         A 

  The following frequency sets based on these setups were used.

   Frequency Set:  13  Setup file default.  Used pcal sets:   1
   LO sum=   4942.49  4942.49  4942.49  4942.49  4974.49  4974.49  4974.49  4974.49
             5006.49  5006.49  5006.49  5006.49  5038.49  5038.49  5038.49  5038.49
   BBC fr=    742.49   742.49   742.49   742.49   774.49   774.49   774.49   774.49
              806.49   806.49   806.49   806.49   838.49   838.49   838.49   838.49
   Bandwd=     16.00    16.00    16.00    16.00    16.00    16.00    16.00    16.00
               16.00    16.00    16.00    16.00    16.00    16.00    16.00    16.00
    Matching frequency sets:  13

  The following pulse cal sets were used with this setup:

   Pulse cal detection set:   1  PCAL = 1MHZ
    PCALXB1=   S1    S3    S5    S7    S9    S11   S13   S15
    PCALXB2=   S2    S4    S6    S8    S10   S12   S14   S16
    PCALFR1=   490   510   490   510   490   510   490   510
    PCALFR2=   490   510   490   510   490   510   490   510

   Track assignments are: 
    track1=   2,  4,  6,  8, 10, 12, 14, 16, 18, 20, 22, 24, 26, 28, 30, 32
    barrel=roll_off 

 POSITIONS OF SOURCES USED IN RECORDING SCANS

   Source                         Source position (RA/Dec)                        Error
                        (B1950)             (J2000)             (Date)            (mas)

 * J0854+2006        08 51 57.250618   * 08 54 48.874930     08 55 34.926297       0.11
   0851+202          20 17 58.41733    * 20 06 30.64078      20 03 19.70618        0.10
   J0854+20          /usr/local/sched/catalogs/sources.vlba
   OJ287             rfc_2012b Petrov, 2012, unpublished 191510 observations

 * J1026+2542        10 23 36.838101   * 10 26 23.621134     10 27 08.790481       0.82
   1023+259          25 58 16.54945    * 25 42 59.42891      25 38 51.41702        0.48
                     /usr/local/sched/catalogs/sources.vlba
                     rfc_2012b Petrov, 2012, unpublished 157 observations

 * J1159+2914        11 56 57.786211   * 11 59 31.833912     12 00 14.091594       0.11
   1156+295          29 31 25.73868    * 29 14 43.82678      29 10 16.72303        0.10
   J1159+29          /usr/local/sched/catalogs/sources.vlba
                     rfc_2012b Petrov, 2012, unpublished 64535 observations



SOURCE SCAN SUMMARY FOR SOURCES LISTED ABOVE

     Scan hours are for recording scans only. 
     Baseline hours are only counted for scans above horizon at both ends.
  Source       Setup file             Frequency sets                  Observing hours
                                   (duplicates not shown)              Scan  Baseline
  J0854+2006 sess213.C1024         1 2 3 4 5 6 7 8 9 12 13 14        0.200    18.200
  J1026+2542 sess213.C1024         1 2 3 4 5 6 7 8 9 12 13 14        3.347   304.164
  J1159+2914 sess213.C1024         1 2 3 4 5 6 7 8 9 12 13 14        0.200    18.200


EFFECT OF SOLAR CORONA

  The solar corona can cause unstable phases for sources too close to the Sun.
  SCHED provides warnings at individual scans for distances less than 10 degrees.
  The distance from the Sun to each source in this schedule is:
    Source         Sun distance (deg) 
   J0854+2006          63.3
   J1026+2542          81.8
   J1159+2914          99.0

  Barry Clark estimates from predictions by Ketan Desai of IPM scattering sizes 
  that the Sun will cause amplitude reductions on the  longest VLBA baselines 
  at a solar distance of 60deg F^(-0.6) where F is in GHz. 
  For common VLBI bands, this is: 
       327 MHz        117. deg 
       610 MHz         81. deg 
       1.6 GHz         45. deg 
       2.3 GHz         36. deg 
       5.0 GHz         23. deg 
       8.4 GHz         17. deg 
      15.0 GHz         12. deg 
      22.0 GHz          9. deg 
      43.0 GHz          6. deg 

