GALAGN · Galaxy Formation and Evolution and the role of AGN
6РП — Действия „Мария Кюри“
- Период
- 2007-05-01 → 2008-03-31
- Финансиране от ЕС
- 146 268 €
- Участници
- 1
- Схема
- EIF
Линиите свързват координатора с партньорите.
Накратко на български
Връзката между раждането на звезди и активността на свръхмасивните черни думи в далечни галактики се анализира чрез инфрачервени и милиметрови данни. Това помага да се разбере как еволюират галактиките и какво спира процеса по създаване на нови звезди.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
Final Activity Report Summary - GALAGN (Galaxy formation and evolution and the role of AGN)
Recent observations and theories support an evolutionary scenario where star formation and accretion activity in galaxies are connected. In this work, we investigated such a link by studying the multi-wavelength properties of active systems, both starburst galaxies, and 'Active galactic nuclei' (AGN) at high-redshifts. Accretion activity and star formation are quantified using mid-infrared (mid-IR) data from the Spitzer Space Telescope and millimetre data from the IRAM 30m Telescope. A population of massive starburst galaxies at high-redshifts and with extreme star formation rates (SFRs) was discovered. Based on the derived large stellar masses, high SFRs and lack of AGN signatures, it is suggested that the mechanism that halts star-formation in powerful starburst galaxies at high-z might not be AGN driven. Two bright millimetre AGNs at z=3.5 were discovered and studied in details. They are characterised by both powerful starburst and AGN activities at similar levels, by outflowing material, large metallicities and stellar masses, heavily absorbed X-ray emission, and large mid-IR/X-ray luminosities. These sources represent the rare transition phase between the starburst and AGN phase predicted by the most recent evolutionary models. Their properties rule out the standard AGN unification model, and favour either a clumpy dust distribution or a scenario with dust in the torus opening angle. A detailed study of the dust properties of obscured AGNs at high-redshifts was also carried out by modelling their IR SEDs and spectra. From the modelling, it emerges that obscuration is not always associated with the torus, but in some cases with cold dust along the line of sight. Based on this study, the decrease in the fraction of obscured AGNs at high-luminosity is confirmed, but more obscured AGNs are found than in optical and X-ray samples at similar luminosities. We find intense star-formation activity in these AGNs, but its contribution to the bolometric luminosity is, on average, <20% of the total bolometric luminosity. By comparing the multi-wavelength properties of different types of obscured AGNs at high-redshifts, we find higher stellar masses in systems with lower AGN power. This trend can be explained by either decreasing Eddington ratios or increasing offsets from the local black hole-bulge mass relationship. In summary, we find that (1) an AGN is not always present in high-z starbursts suggesting that BH growth occurs on shorter timescales than star-formation; (2) the mechanism that halts star-formation in massive starburst galaxies at high-z might not be AGN-driven; and (3) the black hole is in place before the stellar mass has been completely formed or assembled. We have also modelled, for the first time, the infrared spectra of obscured QSOs with torus models providing strong support to the receding torus scenario, demonstrating that obscured AGNs are more common than unobscured AGNs, even at high luminosities and that optical and X-ray selections are biased against these objects, and that these systems are hosted by powerful starburst galaxies. All these studies are presented in four refereed articles, two in the Astrophysical Journal and two in Astronomy & Astrophysics. These studies provide new insights on the star-formation process at high-z, and observables that can be used to test the latest evolutionary theories and better understand the high-redshift universe.
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
We propose a 2 years research project to be carried out at the Institut d' Astrophysique de Paris (IAP) under the supervision of Prof. A. Omont. The ultimate main goal of the project is to investigate the link between galaxy evolution and AGN activity. Recent observations and models suggest that AGN activity occurs during a specific phase of the lifetime of a galaxy. Super-massive black-hole (SMBH) are ubiquitous in the centre of all galaxies, but they are active only for a relatively small fraction of the lifetime of the galaxy. With the proposed project we aim at recording the phases of SMBH growth and vigorous star-bursting activity expected in obscured AGN, and of destruction of the circum-nuclear material and halt of the star-bursting activity in unobscured luminous AGN.The project exploits the existence of large and moderately deep multi-wavelength data including ground-based optical and near-infrared data, Spitzer infrared data and X-ray data covering wide and contiguous areas of the sky, two SWIRE fields and the COSMOS field. Most of the data from these surveys are either already available to either the applicant or the host institution or will become publicly available during 2006. The data will be used to select large and statistically significant samples of starburst galaxies, AGN and composite sources and estimate their redshift, star-formation rate, stellar mass, absorption, black-hole mass, and contribution of AGN and starburst activity.The proposed project will allow the applicant to work in a first class institutions for observations and physics of high redshift quasars and starburst galaxies, to learn new skills and techniques in cosmology, galaxy evolution, and to establish international collaborations. The extensive experience o f the applicant with data from the Infrared Space Observatory and the Spitzer and the experience she will gain working on millimetre data will prepare her to pursue a research career in Europe.
Оригинален текст от CORDIS (на английски).
Участници
- CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE · PARISКоординаторФранция
Връзки
Данни: CORDIS, © Европейски съюз
