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(More) Evidence of Disk- Jet Connection in the Radio Galaxy 3C 120 Ritaban Chatterjee, Boston University. Radio Galaxies in the Chandra Era, July 11 th , 2008.

(More) Evidence of Disk-Jet Connection in the Radio Galaxy 3C 120 Ritaban Chatterjee, Boston University. Radio Galaxies in the Chandra Era, July 11 th,

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Page 1: (More) Evidence of Disk-Jet Connection in the Radio Galaxy 3C 120 Ritaban Chatterjee, Boston University. Radio Galaxies in the Chandra Era, July 11 th,

(More) Evidence of Disk-Jet Connection in the Radio Galaxy

3C 120

Ritaban Chatterjee, Boston University. Radio Galaxies in the Chandra Era,

July 11th, 2008.

Page 2: (More) Evidence of Disk-Jet Connection in the Radio Galaxy 3C 120 Ritaban Chatterjee, Boston University. Radio Galaxies in the Chandra Era, July 11 th,

Disk-Jet connection in 3C 120 (Past)

Marscher et al. (2002)

Page 3: (More) Evidence of Disk-Jet Connection in the Radio Galaxy 3C 120 Ritaban Chatterjee, Boston University. Radio Galaxies in the Chandra Era, July 11 th,

Multi-wavelength Light Curves of 3C 120 between 2002 and 2007

Page 4: (More) Evidence of Disk-Jet Connection in the Radio Galaxy 3C 120 Ritaban Chatterjee, Boston University. Radio Galaxies in the Chandra Era, July 11 th,

X-ray/37 GHz Anti-correlation (X-ray leads 37GHz by 120 days)

Page 5: (More) Evidence of Disk-Jet Connection in the Radio Galaxy 3C 120 Ritaban Chatterjee, Boston University. Radio Galaxies in the Chandra Era, July 11 th,

Modeling of Radio Data : Decomposition into Flares

Page 6: (More) Evidence of Disk-Jet Connection in the Radio Galaxy 3C 120 Ritaban Chatterjee, Boston University. Radio Galaxies in the Chandra Era, July 11 th,

Baseline through Yearly Mean

Page 7: (More) Evidence of Disk-Jet Connection in the Radio Galaxy 3C 120 Ritaban Chatterjee, Boston University. Radio Galaxies in the Chandra Era, July 11 th,

Modeling of the Dips in the X-ray

Page 8: (More) Evidence of Disk-Jet Connection in the Radio Galaxy 3C 120 Ritaban Chatterjee, Boston University. Radio Galaxies in the Chandra Era, July 11 th,

X-ray Dips and 37 GHz Flares

Page 9: (More) Evidence of Disk-Jet Connection in the Radio Galaxy 3C 120 Ritaban Chatterjee, Boston University. Radio Galaxies in the Chandra Era, July 11 th,

Area under the Curve of Radio Flares vs. Depth of the X-ray Dips

Page 10: (More) Evidence of Disk-Jet Connection in the Radio Galaxy 3C 120 Ritaban Chatterjee, Boston University. Radio Galaxies in the Chandra Era, July 11 th,

Possible Explanation of the X-ray Dip and Superluminal Ejection Correlation

1. Change in the magnetic field configuration in the accretion disk from turbulent to aligned => absence of viscous heating causes dips in X-ray production => aligned B field configuration facilitates shock to move towards the jet (Livio et al. 2003)

2. Corona is the base of the jet => decrease in the number density of electrons at the base of the jet => causes X-ray dips and increase in the speed of particles (continuity eqn.) => causes shock wave.

Page 11: (More) Evidence of Disk-Jet Connection in the Radio Galaxy 3C 120 Ritaban Chatterjee, Boston University. Radio Galaxies in the Chandra Era, July 11 th,

Multi-wavelength Light Curves of 3C 120 between 2002 and 2007

Page 12: (More) Evidence of Disk-Jet Connection in the Radio Galaxy 3C 120 Ritaban Chatterjee, Boston University. Radio Galaxies in the Chandra Era, July 11 th,

X-ray/Optical Correlation (X-ray leads Optical R band by 10 days)

Page 13: (More) Evidence of Disk-Jet Connection in the Radio Galaxy 3C 120 Ritaban Chatterjee, Boston University. Radio Galaxies in the Chandra Era, July 11 th,

Origin of Optical Emission

Jet• Polarization ≤ 0.3%

• Radio outbursts in the jet anti-correlates with X-ray.

Accretion disk• Excellent correlation

with the X-ray with ≤ 10 days time lag