Incidence of Strong MgII Absorbers Towards Different Types of Quasars
Ravi Joshi (ARIES), Hum Chand (ARIES), Gopal-Krishna (IUCAA)

TL;DR
This study compares strong MgII absorbers towards different quasar types, revealing that some absorbers in core-dominated quasars are likely associated with the quasars' jets or outflows, not just intervening matter.
Contribution
It provides the first large-scale comparative analysis of MgII absorbers in radio-loud quasars, highlighting their potential association with quasar jets and outflows.
Findings
Marginal excess of MgII absorbers towards core-dominated quasars.
Significant excess of absorbers at specific velocity ranges linked to quasar activity.
Associated absorbers can be observed at larger velocities than previously thought.
Abstract
We report the first comparative study of strong MgII absorbers seen towards radio-loud quasars of core-dominated (CDQs) and lobe-dominated (LDQs) types and normal QSOs. The MgII associated absorption systems having a velocity offset v < 5000km/s from the systemic velocity of the background quasar were also excluded. Existing spectroscopic data for redshift-matched sightlines of 3975 CDQs and 1583 LDQs, covering a emission redshift range 0.39-4.87, were analysed and 864 strong MgII absorbers were found, covering the redshift range 0.45-2.17. The conclusions reached using this well-defined large dataset of strong MgII absorbers are: (i) The number density, dN/dz, towards CDQs shows a small, marginally significant excess over the estimate available for QSOs; (ii) In the redshift space, this difference is reflected in terms of a 1.6sigma excess of dN/dz over the QSOs, within the narrow…
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