Table 2
15 GHz Gaussian component model at epoch 2009 May 28.
Comp. | S | S/N | r | ϕ | Maj. | Ratio | PA |
(mJy) | (mas) | (deg) | (mas) | (deg) | |||
(1) | (2) | (3) | (4) | (5) | (6) | (7) | (8) |
|
|||||||
C | 3649 | 833 | ... | ... | 0.53 | 0.58 | 33 |
J | 51 | 18 | 0.75 | −11 | 0.28 | 1.00 | ... |
J | 121 | 17 | 1.54 | −20 | 1.13 | 1.00 | ... |
S | 393 | 166 | 0.77 | −144 | 0.29 | 1.00 | ... |
S | 302 | 70 | 0.78 | 33 | 0.38 | 1.00 | ... |
S | 144 | 83 | 1.21 | −138 | 0.27 | 1.00 | ... |
S | 119 | 28 | 1.45 | 33 | 0.45 | 1.00 | ... |
Notes.Columns are as follows: (1) component designation: C is the core, J is the jet, S is the secondary image component; (2) fitted Gaussian flux density at 15 GHz; (3) signal-to-noise ratio determined as the ratio of the peak flux density of the component to the rms noise under it; (4) position offset from the core component; (5) position angle of the component with respect to the core component; (6) FWHM major axis of the fitted Gaussian; (7) axial ratio of the fitted Gaussian; (8) major axis position angle of the fitted Gaussian.
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