2022A&A...659A.124H


Query : 2022A&A...659A.124H

2022A&A...659A.124H - Astronomy and Astrophysics, volume 659A, 124-124 (2022/3-1)

The Close AGN Reference Survey (CARS). IFU survey data and the BH mass dependence of long-term AGN variability.

HUSEMANN B., SINGHA M., SCHARWACHTER J., McELROY R., NEUMANN J., SMIRNOVA-PINCHUKOVA I., URRUTIA T., BAUM S.A., BENNERT V.N., COMBES F., CROOM S.M., DAVIS T.A., FOURNIER Y., GALKIN A., GASPARI M., ENKE H., KRUMPE M., O'DEA C.P., PEREZ-TORRES M., ROSE T., TREMBLAY G.R. and WALCHER C.J.

Abstract (from CDS):

Context. Active galactic nuclei (AGN) are thought to be intimately connected with their host galaxies through feeding and feedback processes. A strong coupling is predicted and supported by cosmological simulations of galaxy formation, but the details of the physical mechanisms are still observationally unconstrained. Aims. Galaxies are complex systems of stars and a multiphase interstellar medium (ISM). A spatially resolved multiwavelength survey is required to map the interaction of AGN with their host galaxies on different spatial scales and different phases of the ISM. The goal of the Close AGN Reference Survey (CARS) is to obtain the necessary spatially resolved multiwavelength observations for an unbiased sample of local unobscured luminous AGN. Methods. We present the overall CARS survey design and the associated wide-field optical integral-field unit (IFU) spectroscopy for all 41 CARS targets at z < 0.06 randomly selected from the Hamburg/ESO survey of luminous unobscured AGN. This data set provides the backbone of the CARS survey and allows us to characterize host galaxy morphologies, AGN parameters, precise systemic redshifts, and ionized gas distributions including excitation conditions, kinematics, and metallicities in unprecedented detail. Results. We focus our study on the size of the extended narrow-line region (ENLR) which has been traditionally connected to AGN luminosity. Given the large scatter in the ENLR size-luminosity relation, we performed a large parameter search to identify potentially more fundamental relations. Remarkably, we identified the strongest correlation between the maximum projected ENLR size and the black hole mass, consistent with an RENLR,max∼MBH0.5 relationship. We interpret the maximum ENLR size as a timescale indicator of a single black hole (BH) radiative-efficient accretion episode for which we inferred <log(tAGN/[yr])> (0.45±0.08)log(MBH/[M])+1.78–0.67+0.54 using forward modeling. The extrapolation of our inferred relation toward higher BH masses is consistent with an independent lifetime estimate from the HeII proximity zones around luminous AGN at z ∼ 3. Conclusions. While our proposed link between the BH mass and AGN lifetime might be a secondary correlation itself or impacted by unknown biases, it has a few relevant implications if confirmed. For example, the famous AGN Eigenvector 1 parameter space may be partially explained by the range in AGN lifetimes. Also, the lack of observational evidence for negative AGN feedback on star formation can be explained by such timescale effects. Further observational tests are required to confirm or rule out our BH mass dependent AGN lifetime hypothesis.

Abstract Copyright: © B. Husemann et al. 2022

Journal keyword(s): surveys - quasars: general - quasars: supermassive black holes - galaxies: ISM - techniques: imaging spectroscopy

Simbad objects: 42

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Number of rows : 42
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2023
#notes
1 2MASX J00233937-1753536 BLL 00 23 39.3777952440 -17 53 54.100909320   16.83 15.4 15.71   ~ 16 0
2 2MASX J00235534-1802508 Sy1 00 23 55.3612349736 -18 02 50.539463592   16.84 14.80 16.00   ~ 16 0
3 LEDA 2549 Sy1 00 42 36.8630508072 -10 49 22.080489888   17.03 16.58 13.7   ~ 41 0
4 ESO 540-27 EmG 00 47 41.3248084416 -21 29 27.612149712   14.52   13.51   ~ 32 0
5 HE 0108-4743 Sy1 01 11 09.7 -47 27 35   15.10 14.53 13.88   ~ 26 0
6 LEDA 1154714 Sy1 01 17 03.5826317664 +00 00 27.366719364   17.29 16.79     ~ 46 0
7 Z 385-82 Sy1 01 21 59.8143568104 -01 02 24.367631424   17.04 16.78 11.0   ~ 148 0
8 2MASX J01530150-0329229 G 01 53 01.504 -03 29 22.90           ~ 6 0
9 Mrk 1018 Sy1 02 06 15.9896281128 -00 17 29.221733688   15.90 15.50 10.3   ~ 321 0
10 NGC 863 Sy1 02 14 33.5604714720 -00 46 00.181845336   14.48 13.81 17.9   ~ 668 0
11 2dFGRS TGS310Z041 Sy1 02 26 25.7183513424 -28 20 58.842061008   16.096 16.76 15.140   ~ 41 0
12 Mrk 1044 Sy1 02 30 05.5225590096 -08 59 53.207139372   14.74 14.29 13.981 13.585 ~ 273 0
13 NGC 985 Sy1 02 34 37.882 -08 47 17.02   14.64 14.28 12.9   ~ 399 0
14 2MASX J02560264-1629159 Sy1 02 56 02.6511007032 -16 29 15.523003248   13.5       ~ 45 0
15 IRAS 03450+0055 Sy1 03 47 40.1887730832 +01 05 14.048016576   15.09 14.64     ~ 88 0
16 LEDA 14064 Sy1 03 54 09.4651613568 +02 49 30.669766752   17.30 16.2     ~ 67 0
17 LEDA 14727 Sy1 04 14 52.6568539056 -07 55 39.688821372   15.66 14.91     ~ 89 0
18 LEDA 3095687 Sy1 04 31 37.0710883200 -02 41 23.941415508   15.0 16.2 14.2   ~ 15 0
19 Mrk 618 Sy1 04 36 22.2985487328 -10 22 33.986941536   15.08 14.51 10.7   ~ 248 0
20 2MASX J08555426+0051110 Sy1 08 55 54.2744403360 +00 51 10.987345728   18.07 17.49     ~ 29 0
21 2MASX J08561784-0138073 Sy1 08 56 17.8314216984 -01 38 07.356270156   14.4   11.7   ~ 26 0
22 Mrk 707 Sy1 09 37 01.0466933232 +01 05 43.747904040   16.86 16.64     ~ 137 0
23 Mrk 1239 Sy1 09 52 19.168 -01 36 44.10   14.99 14.39 11.2   ~ 316 0
24 QSO B1011-040 Sy1 10 14 20.6738908080 -04 18 40.372940484   15.49 15.5     ~ 140 0
25 Mrk 1253 Sy1 10 19 32.8694687568 -03 20 14.806613328   13.1   14.784   ~ 38 0
26 IRAS 10295-1831 Sy1 10 31 57.3070391520 -18 46 33.326887548   11.4   11.7   ~ 53 0
27 ATO J167.4520-08.5041 Sy1 11 09 48.4970869104 -08 30 15.047824140           ~ 20 0
28 ESO 438-9 Sy1 11 10 48.0023163336 -28 30 03.768978096   14.26 14.17 13.19   ~ 86 0
29 Mrk 1298 Sy1 11 29 16.7288400936 -04 24 07.246460520   14.97 14.61     ~ 201 1
30 3C 273 BLL 12 29 06.6998257176 +02 03 08.597629980   13.05 14.830 14.11   ~ 5711 1
31 NGC 4593 Sy1 12 39 39.4435107024 -05 20 39.034988448   13.95 13.15     ~ 1065 0
32 IC 3834 Sy1 12 51 32.3735000688 -14 13 16.020799176   17.0       ~ 39 1
33 LEDA 45913 Sy1 13 13 05.7810527568 -11 07 42.369955428   15.48 15.15 13.4   ~ 130 0
34 MCG-02-35-001 Sy1 13 32 39.1123739520 -10 28 52.576742784   12.8 15.6 10.2   ~ 32 0
35 2MASX J13411287-1438407 Sy1 13 41 12.8835794640 -14 38 40.247801448   15.02 14.63 11.5   ~ 82 0
36 ESO 578-9 Sy1 13 56 36.7129822776 -19 31 44.861754828   15.25   14.46   ~ 58 0
37 LEDA 991689 Sy1 14 20 06.2995392696 -09 23 13.078054032   15.6   15.1   ~ 17 0
38 2MASS J21304994-0208145 AG? 21 30 49.9357819680 -02 08 14.549091108   17.46   16.33   ~ 13 0
39 ESO 344-16 Sy1 22 14 42.0139106784 -38 48 22.878054144   15.32 14.54 10.0   ~ 65 0
40 HE 2222-0026 Sy1 22 24 35.2931386704 -00 11 03.873799608   17.21 16.88     ~ 31 0
41 2MASX J22354193+0139333 Sy1 22 35 41.8949303472 +01 39 33.560087976           ~ 24 0
42 Mrk 926 Sy1 23 04 43.4776098480 -08 41 08.629476864   16.20 15.91 9.4   ~ 444 0

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2023.09.23-00:37:03

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