AGN jet-induced feedback in galaxies - II. Galaxy colours from a multicloud simulation
Обратная связь, индуцированная джетами активных галактических ядер, в галактиках — II. Цвета галактик по результатам мультиоблачного моделирования
2009-05-08
SCID: 54.1/s36uezke
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AGN jet feedbackBruzual–Charlot population synthesisgalaxy colour evolutionstar formation quenchingtwo-phase interstellar medium
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Abstract (AI)
We study the feedback from an active galactic nucleus (AGN) on stellar formation within its host galaxy, mainly using one high-resolution numerical simulation of the jet propagation within the interstellar medium (ISM) of an early-type galaxy (ETG). In particular, we show that in a realistic simulation where the jet propagates into a two-phase ISM, star formation (SF) can initially be slightly enhanced and then, on time-scales of few million years, rapidly quenched, as a consequence both of the high temperatures attained and of the reduction of cloud mass (mainly due to Kelvin–Helmholtz instabilities). We then introduce a model of (prevalently) negative AGN feedback, where an exponentially declining star formation is quenched, on a very short time-scale, at a time tAGN, due to AGN feedback. Using the Bruzual and Charlot population synthesis model and our SF history, we predict galaxy colours from this model and match them to a sample of nearby ETGs showing signs of recent episodes of SF, see Kaviraj et al. We find that the quantity tgal–tAGN, where tgal is the galaxy age, is an excellent indicator of the presence of feedback processes, and peaks significantly around tgal–tAGN≈ 0.85 Gyr for our sample, consistent with feedback from recent energy injection by AGNs in relatively bright (MB≲−19) and massive nearby ETGs. Galaxies that have experienced this recent feedback show an enhancement of 3 mag in NUV (GALEX) −g, with respect to the unperturbed, no-feedback evolution. Hence, they can be easily identified in large combined near UV-optical surveys.
Key Findings
1
A population-synthesis model with exponentially declining star formation abruptly quenched at time tAGN reproduces observed colours of nearby early-type galaxies with recent star formation.
2
High-resolution multicloud simulations show AGN jets can initially slightly enhance star formation before rapidly quenching it within a few million years.
3
Recent AGN feedback produces an approximately 3-magnitude enhancement in GALEX NUV−g colour relative to unperturbed evolution, enabling identification in combined near-ultraviolet–optical surveys.
4
Star-formation quenching results from both high temperatures and reduced cloud masses, primarily caused by Kelvin–Helmholtz instabilities.
5
The time difference tgal−tAGN is a strong feedback indicator, peaking near 0.85 Gyr and supporting recent AGN energy injection in bright, massive nearby early-type galaxies.
Research Object
AGN jet feedback acting on star formation in the interstellar medium of early-type host galaxies
Research Subject
The temporal evolution and observable colour signatures of AGN-induced star-formation enhancement and quenching
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2009-05-08
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