2009ApJ...706.1020M


Query : 2009ApJ...706.1020M

2009ApJ...706.1020M - Astrophys. J., 706, 1020-1035 (2009/December-1)

A near-infrared excess in the continuum of high-redshift galaxies: a tracer of star formation and circumstellar disks?

MENTUCH E., ABRAHAM R.G., GLAZEBROOK K., McCARTHY P.J., YAN H., O'DONNELL D.V., LE BORGNE D., SAVAGLIO S., CRAMPTON D., MUROWINSKI R., JUNEAU S., CARLBERG R.G., JORGENSEN I., ROTH K., CHEN H.-W. and MARZKE R.O.

Abstract (from CDS):

A broad continuum excess in the near-infrared, peaking in the rest frame at 2-5 µm, is detected in a spectroscopic sample of 88 galaxies at 0.5 < z < 2.0 taken from the Gemini Deep Deep Survey. Line emission from polycyclic aromatic hydrocarbons (PAHs) at 3.3 µm alone cannot explain the excess, which can be fit by a spectral component consisting of a template of PAH emission lines superposed on a modified blackbody of temperature T ∼ 850 K. The luminosity of this near-infrared excess emission at 3 µm is found to be correlated with the star formation rate of the galaxy. The origin of the near-infrared excess is explored by examining similar excesses observed locally in massive star-forming regions, reflection and planetary nebulae, post-asymptotic giant branch stars, and in the galactic cirrus. We also consider the potential contribution from dust heated around low-luminosity active galactic nuclei. We conclude that the most likely explanation for the 2-5 µm excess is the contribution from circumstellar disks around massive young stellar objects seen in the integrated light of high-redshift galaxies. Assuming circumstellar disks extend down to lower masses, as they do in our own Galaxy, the excess emission presents us with an exciting opportunity to measure the formation rate of planetary systems at cosmic epochs before our own solar system formed.

Abstract Copyright:

Journal keyword(s): circumstellar matter - galaxies: evolution - galaxies: stellar content - infrared: galaxies - infrared: stars - planetary systems: protoplanetary disks

Simbad objects: 29

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Number of rows : 29
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 NAME SMC G 00 52 38.0 -72 48 01   2.79 2.2     ~ 11152 1
2 GDDS SA02-1011 G 02 09 31.59 -04 38 54.0     25.67     ~ 4 0
3 GDDS SA02-0621 G 02 09 36.80 -04 40 04.2     25.18     ~ 2 0
4 GDDS SA02-0744 G 02 09 38.83 -04 39 44.3     23.80     ~ 2 0
5 GDDS SA02-1777 G 02 09 40.27 -04 36 02.6     24.37     ~ 3 0
6 GDDS SA02-2530 G 02 09 42.94 -04 35 14.3     23.81     ~ 3 0
7 GDDS SA02-0733 G 02 09 43.10 -04 39 41.1     23.16     ~ 2 0
8 GDDS SA02-1636 G 02 09 48.03 -04 35 25.1     24.09     ~ 3 0
9 NAME LMC G 05 23 34.6 -69 45 22     0.4     ~ 17438 0
10 M 42 HII 05 35 17 -05 23.4           ~ 4077 0
11 RMC 136 Cl* 05 38 42.396 -69 06 03.36   5.81 5.40     ~ 2019 2
12 NGC 2023 RNe 05 41 37.9 -02 15 52           ~ 635 1
13 NGC 2024 Cl* 05 41 43 -01 50.5           ~ 1154 1
14 M 78 RNe 05 46 45.8 +00 04 45   8.0       ~ 375 0
15 NAME Orion Molecular Cloud MoC 05 56 -01.8           ~ 1099 1
16 M 82 AGN 09 55 52.430 +69 40 46.93 9.61 9.30 8.41     ~ 5861 6
17 NGC 3576 HII 11 11 49.8 -61 18 14           ~ 237 2
18 GDDS SA12-7660 G 12 05 26.83 -07 22 07.8   25.56 23.91     ~ 6 0
19 GDDS SA12-5241 G 12 05 28.35 -07 24 57.9   24.49 23.62     ~ 4 0
20 Mrk 231 Sy1 12 56 14.2341182928 +56 52 25.238373852   14.68 13.84     ~ 1989 3
21 GAL 305.20+00.2 bub 13 11 35.1 -62 33 26           ~ 39 0
22 GDDS SA15-5348 G 15 23 54.88 -00 06 04.9   26.50 24.93     ~ 4 0
23 NGC 7023 RNe 21 01 36.9 +68 09 48           ~ 703 0
24 HD 200755 * 21 04 19.1719418760 +36 08 57.333402600   9.08 9.11     A0 14 0
25 GDDS SA22-0128 G 22 17 32.59 +00 13 13.0     25.02     ~ 4 0
26 [DBE2005] SSA22 2467 G 22 17 35.8459 +00 13 51.524   26.2 24.79   22.12 ~ 10 0
27 [DBE2005] SSA22 2335 G 22 17 42.12 +00 14 30.4     25.21   23.37 ~ 4 0
28 GDDS SA22-0083 G 22 17 42.27 +00 12 59.5     24.63     ~ 3 0
29 GDDS SA22-0893 G 22 17 46.92 +00 15 48.8     26.02     ~ 4 0

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