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The quasar PKS 1510-089: Direct evidence for a changing orientation of the central engine. John Wardle (Brandeis), Dan Homan (NRAO), C. C. Cheung & Dave Roberts (Brandeis) et al. ultra-fast
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The quasar PKS 1510-089: Direct evidence for a changing orientation of the central engine. John Wardle (Brandeis), Dan Homan (NRAO), C. C. Cheung & Dave Roberts (Brandeis) ultra-fast
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The quasar PKS 1510-089: Direct evidence for a changing orientation of the central engine. John Wardle (Brandeis), Dan Homan (NRAO), C. C. Cheung & Dave Roberts (Brandeis) ultra-fast
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The quasar PKS 1510-089: Direct evidence for a changing orientation of the central engine. John Wardle (Brandeis), Dan Homan (NRAO), C. C. Cheung & Dave Roberts (Brandeis) ultra-fast
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The quasar PKS 1510-089: Direct evidence for a changing orientation of the central engine. John Wardle (Brandeis), Dan Homan (NRAO), C. C. Cheung & Dave Roberts (Brandeis) ultra-fast
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The quasar PKS 1510-089: Direct evidence for a changing orientation of the central engine. John Wardle (Brandeis), Dan Homan (NRAO), C. C. Cheung & Dave Roberts (Brandeis) ultra-fast
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The quasar PKS 1510-089: Direct evidence for a changing orientation of the central engine. John Wardle (Brandeis), Dan Homan (NRAO), C. C. Cheung & Dave Roberts (Brandeis) ultra-fast
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The quasar PKS 1510-089: Direct evidence for a changing orientation of the central engine. John Wardle (Brandeis), Dan Homan (NRAO), C. C. Cheung & Dave Roberts (Brandeis) ultra-fast
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The quasar PKS 1510-089: Direct evidence for a changing orientation of the central engine. John Wardle (Brandeis), Dan Homan (NRAO), C. C. Cheung & Dave Roberts (Brandeis) ultra-fast
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The quasar PKS 1510-089: Direct evidence for a changing orientation of the central engine. John Wardle (Brandeis), Dan Homan (NRAO), C. C. Cheung & Dave Roberts (Brandeis) ultra-fast
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The quasar PKS 1510-089: Direct evidence for a changing orientation of the central engine. John Wardle (Brandeis), Dan Homan (NRAO), C. C. Cheung & Dave Roberts (Brandeis) ultra-fast
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The quasar PKS 1510-089: Direct evidence for a changing orientation of the central engine. John Wardle (Brandeis), Dan Homan (NRAO), C. C. Cheung & Dave Roberts (Brandeis) ultra-fast
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The quasar PKS 1510-089: Direct evidence for a changing orientation of the central engine. John Wardle (Brandeis), Dan Homan (NRAO), C. C. Cheung & Dave Roberts (Brandeis) + VLBA + VLA + MERLIN + ARCHIVES ultra-fast
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The quasar PKS 1510-089: Direct evidence for a changing orientation of the central engine. John Wardle (Brandeis), Dan Homan (NRAO), C. C. Cheung & Dave Roberts (Brandeis) + VLBA + VLA + MERLIN + ARCHIVES ultra-fast
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The quasar PKS 1510-089: Direct evidence for a changing orientation of the central engine. John Wardle (Brandeis), Dan Homan (NRAO), C. C. Cheung & Dave Roberts (Brandeis) + VLBA + VLA + MERLIN + ARCHIVES ultra-fast
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The quasar PKS 1510-089: Direct evidence for a changing orientation of the central engine. John Wardle (Brandeis), Dan Homan (NRAO), C. C. Cheung & Dave Roberts (Brandeis) + VLBA + VLA + MERLIN + ARCHIVES ultra-fast
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Properties Gamma-ray blazar (EGRET) X-ray variable (RXTE, Marscher) m opt > 5.4 m (Harvard plates, Liller) Redshift = 0.360; 1 mas = 5.0 pc (h=0.7) These are characteristics of highly relativistic jets that make a small angle to the line of sight. They should also exhibit superluminal motion.
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Jan-Dec 1996, 15 GHz
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= 1.0 mas/yr 1510-089 at 22, 15 and 5 GHz
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Properties Gamma-ray blazar (EGRET) X-ray variable (RXTE, Marscher) m opt > 5.4 m (Harvard plates, Liller) Redshift = 0.360; 1 mas = 5.0 pc (h=0.7) app = 20 pattern > 20 line of sight ~ 1/20 rad ~ 3 o
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The alignment of small and large scale structure P.A. of parsec scale jet = -28 o
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5 GHz VLA image
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The misalignment of small and large scale srtructure P.A. of parsec scale jet = -28 o P.A. of kiloparsec scale jet = 155 o The pc and kpc jets differ in direction on the sky by 177 o. This is the most extreme misalignment known.
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Questions Is the parsec scale jet a new jet? Or, do the pc and kpc jets join up? If so, how and where? Does the change in jet direction represent a deflection or fluid instability in the jet itself, on parsec or sub-parsec scales, or has the axis of the central engine changed? We need low resolution VLBA observations
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1510-089 at 1.4 GHz
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1510-089 at 1.4 GHz, smoothed
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Feature at 300 mas is not a hotspot at the end of a new jet. If the highly polarized edge is a shock (terminal hotspot), then the total intensity should peak there too. The jet makes an angle ~ 3 o to the line of sight, so the “hot spot” is viewed almost face-on (since v hotspot < v jet ). So if the hotspot were a Laing sheet perpendicular to the jet, it could not exhibit ~70% polarization.
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1510-089 on three scales
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explanation
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Where is the counter- lobe? In projection, on the same side of the core as the VLA jet, and opposite the VLBA jet
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Behind the jet?
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Here it is core vla jet
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New interpretation
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Inferred timescale The rate at which the axis turns, , can be inferred from the turning point in the jet at 300 mas (1500 pc), and the observed superluminal motion. If the fluid motion is ballistic at = 20, then 1/ ~ 10 4 years. If, more realistically, the fluid pushes the jet outwards at an effective speed c, then 1/ ~ 4 x 10 6 years.
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Realignment timescale If a rotating black hole and its accretion disk are misaligned (galaxy merger?), they realign via Lense-Thirring drag (Bardeen & Petterson, 1975). The time scale for this is relatively fast (Natarajan & Pringle, 1998, Dennett- Thorpe et al 2002) t align (yr) = 3.6 x 10 4 a 11/16 ( /0.01) 13/8 x ( L E /L) 7/8 M 8 –1/16
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1.4 – 5 GHz spectral index map: the VLA jet is still populated by recently accelerated electrons
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1510-089 x-rays by Rita Sambruna (false color) superposed on radio (contours)
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Conclusions PKS 1510-089 is an extreme blazar in all wavebands. ( app = 20 and los ~3 o ) On parsec scales, the jet points to the north-west The jet turns back across the line of sight at 300 mas, and feeds the south-eastern kpc jet. A counter-lobe has been found north-west of the core. The data suggest that the axis of the central engine has changed by ~20 o relatively recently, perhaps due to a black hole merger.
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