2015A&A...583A..99F


Query : 2015A&A...583A..99F

2015A&A...583A..99F - Astronomy and Astrophysics, volume 583A, 99-99 (2015/11-1)

The multi-phase winds of Markarian 231: from the hot, nuclear, ultra-fast wind to the galaxy-scale, molecular outflow.

FERUGLIO C., FIORE F., CARNIANI S., PICONCELLI E., ZAPPACOSTA L., BONGIORNO A., CICONE C., MAIOLINO R., MARCONI A., MENCI N., PUCCETTI S. and VEILLEUX S.

Abstract (from CDS):

Mrk 231 is a nearby ultra-luminous IR galaxy exhibiting a kpc-scale, multi-phase AGN-driven outflow. This galaxy represents the best target to investigate in detail the morphology and energetics of powerful outflows, as well as their still poorly-understood expansion mechanism and impact on the host galaxy. In this work, we present the best sensitivity and angular resolution maps of the molecular disk and outflow of Mrk 231, as traced by CO(2-1) and (3-2) observations obtained with the IRAM/PdBI. In addition, we analyze archival deep Chandra and NuSTAR X-ray observations. We use this unprecedented combination of multi-wavelength data sets to constrain the physical properties of both the molecular disk and outflow, the presence of a highly-ionized ultra-fast nuclear wind, and their connection. The molecular CO(2-1) outflow has a size of ∼1 kpc, and extends in all directions around the nucleus, being more prominent along the south-west to north-east direction, suggesting a wide-angle biconical geometry. The maximum projected velocity of the outflow is nearly constant out to ∼1 kpc, thus implying that the density of the outflowing material must decrease from the nucleus outwards as ∼r–2. This suggests that either a large part of the gas leaves the flow during its expansion or that the bulk of the outflow has not yet reached out to ∼1kpc, thus implying a limit on its age of ∼1Myr. Mapping the mass and energy rates of the molecular outflow yields {dot}(M)OF=[500-1000]M/yr and {dot}(E)kin,OF=[7-10]x1043erg/s. The total kinetic energy of the outflow is Ekin,OF is of the same order of the total energy of the molecular disk, Edisk. Remarkably, our analysis of the X-ray data reveals a nuclear ultra-fast outflow (UFO) with velocity -20000km/s, {dot}(M)UFO=[0.3-2.1]M/yr, and momentum load {dot}(P)UFO/{dot}(P)rad=[0.2-1.6]. We find {dot}(E)kin,UFO~{dot}(E)kin,OF as predicted for outflows undergoing an energy conserving expansion. This suggests that most of the UFO kinetic energy is transferred to mechanical energy of the kpc-scale outflow, strongly supporting that the energy released during accretion of matter onto super-massive black holes is the ultimate driver of giant massive outflows. The momentum flux {dot}(P)OF derived for the large scale outflows in Mrk 231 enables us to estimate a momentum boost {dot}(P)OF/{dot}(P)UFO≃[30-60]. The ratios {dot}(E)_kin, UFO/Lbol,AGN_=[ 1-5]% and {dot}(E)kin,OF/Lbol,AGN=[1-3]% agree with the requirements of the most popular models of AGN feedback.

Abstract Copyright:

Journal keyword(s): galaxies: individual: Mrk 231 - galaxies: active - galaxies: evolution - galaxies: ISM - galaxies: kinematics and dynamics - quasars: general

Simbad objects: 11

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Number of rows : 11
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 3C 84 Sy2 03 19 48.1599902040 +41 30 42.108850836   13.10 12.48 11.09   ~ 4008 3
2 IRAS 11119+3257 Sy1 11 14 38.8902542640 +32 41 33.483258276   19.22 17.96     ~ 145 1
3 SDSS J114816.64+525150.3 QSO 11 48 16.647 +52 51 50.31   25.73 25.04     ~ 453 0
4 LB 2136 Sy1 11 53 24.46663994 +49 31 08.8301372   17.94 17.66     ~ 499 1
5 PB 3894 Sy1 12 14 17.6738687784 +14 03 13.182723144   14.46 14.19     ~ 821 0
6 NGC 4355 Sy2 12 26 54.6206739120 -00 52 39.421212996   14.21 13.37     ~ 491 2
7 Mrk 231 Sy1 12 56 14.2341182928 +56 52 25.238373852   14.68 13.84     ~ 1988 3
8 IC 4553 SyG 15 34 57.22396 +23 30 11.6084   14.76 13.88     ~ 2961 4
9 QSO B1725-142 QSO 17 28 19.7893499760 -14 15 55.854918288   14.69 14.03 13.7   ~ 308 0
10 EM* MWC 349 ** 20 32 45.499080 +40 39 36.74124   15.88 13.15 12.13   Bep 801 0
11 NAME Local Group GrG ~ ~           ~ 8391 0

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