TY - JOUR
T1 - Constraining the radio jet proper motion of the high-redshift quasar J2134-0419 at z = 4.3
AU - Perger, Krisztina
AU - Frey, Sándor
AU - Gabányi, Krisztina E.
AU - An, Tao
AU - Britzen, Silke
AU - Cao, Hong Min
AU - Cseh, Dávid
AU - Dennett-Thorpe, Jane
AU - Gurvits, Leonid I.
AU - Hong, Xiao Yu
AU - Hook, Isobel M.
AU - Paragi, Zsolt
AU - Schilizzi, Richard T.
AU - Yang, Jun
AU - Zhang, Yingkang
PY - 2018/6/11
Y1 - 2018/6/11
N2 - To date, PMN J2134-0419 (at a redshift z = 4.33) is the second most distant quasar known with a milliarcsecond-scale morphology permitting direct estimates of the jet proper motion. Based on two-epoch observations, we constrained its radio jet proper motion using the very long baseline interferometry (VLBI) technique. The observations were conducted with the European VLBI Network (EVN) at 5 GHz on 1999 November 26 and 2015 October 6. We imaged the central 10-pc scale radio jet emission and modelled its brightness distribution. By identifying a jet component at both epochs separated by 15.86 yr, a proper motion of μ = 0.035 ± 0.023 mas yr-1 is found. It corresponds to an apparent superluminal speed of βa = 4.1 ± 2.7 c. Relativistic beaming at both epochs suggests that the jet viewing angle with respect to the line of sight is smaller than 20°, with a minimum bulk Lorentz factor Γ = 4.3. The small value of the proper motion is in good agreement with the expectations from the cosmological interpretation of the redshift and the current cosmological model. Additionally we analysed archival Very Large Array observations of J2143-0419 and found indication of a bent jet extending to ~30 kpc.
AB - To date, PMN J2134-0419 (at a redshift z = 4.33) is the second most distant quasar known with a milliarcsecond-scale morphology permitting direct estimates of the jet proper motion. Based on two-epoch observations, we constrained its radio jet proper motion using the very long baseline interferometry (VLBI) technique. The observations were conducted with the European VLBI Network (EVN) at 5 GHz on 1999 November 26 and 2015 October 6. We imaged the central 10-pc scale radio jet emission and modelled its brightness distribution. By identifying a jet component at both epochs separated by 15.86 yr, a proper motion of μ = 0.035 ± 0.023 mas yr-1 is found. It corresponds to an apparent superluminal speed of βa = 4.1 ± 2.7 c. Relativistic beaming at both epochs suggests that the jet viewing angle with respect to the line of sight is smaller than 20°, with a minimum bulk Lorentz factor Γ = 4.3. The small value of the proper motion is in good agreement with the expectations from the cosmological interpretation of the redshift and the current cosmological model. Additionally we analysed archival Very Large Array observations of J2143-0419 and found indication of a bent jet extending to ~30 kpc.
KW - Galaxies: Active
KW - Galaxies: High-redshift
KW - Galaxies: Nuclei
KW - Quasars: Individual: PMN J2134-0419
KW - Radio continuum: Galaxies
UR - http://www.scopus.com/inward/record.url?scp=85046619715&partnerID=8YFLogxK
U2 - 10.1093/mnras/sty837
DO - 10.1093/mnras/sty837
M3 - Article
AN - SCOPUS:85046619715
SN - 0035-8711
VL - 477
SP - 1065
EP - 1070
JO - Monthly Notices of the Royal Astronomical Society
JF - Monthly Notices of the Royal Astronomical Society
IS - 1
ER -