2007ApJ...657..810D


Query : 2007ApJ...657..810D

2007ApJ...657..810D - Astrophys. J., 657, 810-837 (2007/March-2)

Infrared emission from interstellar dust. IV. The silicate-graphite-PAH model in the post-Spitzer era.

DRAINE B.T. and LI A.

Abstract (from CDS):

IR emission spectra are calculated for dust heated by starlight, for mixtures of amorphous silicate and graphitic grains, including varying amounts of PAH particles. The models are constrained to reproduce the average Milky Way extinction curve. The calculations include the effects of single-photon heating. Updated IR absorption properties for the PAHs are presented that are consistent with observed emission spectra, including those newly obtained by Spitzer. We find a size distribution for the PAHs giving emission band ratios consistent with the observed spectra of the Milky Way and other galaxies. Emission spectra are presented for a wide range of starlight intensities. We calculate how the efficiency of emission into different IR bands depends on PAH size; the strong 7.7 µm emission feature is produced mainly by PAH particles containing <103 C atoms. We also calculate how the emission spectrum depends on U, the starlight intensity relative to the local interstellar radiation field. The submillimeter and far-infrared emission is compared to the observed emission from the local interstellar medium. Using a simple distribution function, we calculate the emission spectrum for dust heated by a distribution of starlight intensities, such as occurs within galaxies. The models are parameterized by the PAH mass fraction qPAH, the lower cutoff Uminof the starlight intensity distribution, and the fraction γ of the dust heated by starlight with U>Umin. We present graphical procedures using Spitzer IRAC and MIPS photometry to estimate the parameters qPAH, Umin, and γ, the fraction fPDRof the dust luminosity coming from photodissociation regions with U>100, and the total dust mass Mdust.

Abstract Copyright:

Journal keyword(s): ISM: Dust, Extinction - Infrared: Galaxies - Infrared: ISM - Radiation Mechanisms: Thermal

Simbad objects: 23

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Number of rows : 23
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 [RLB93] SMC-B1 1 MoC 00 45 32.7 -73 18 46           ~ 33 0
2 NAME SMC G 00 52 38.0 -72 48 01   2.79 2.2     ~ 11152 1
3 NGC 1266 Sy1 03 16 00.7739640240 -02 25 37.827013584   14   12.46   ~ 306 1
4 SBSG 0335-052 bCG 03 37 44.06 -05 02 40.2     16.65     ~ 472 1
5 Ced 21 RNe 03 44.6 +32 20           ~ 6 0
6 HD 34700 SB* 05 19 41.4089390784 +05 38 42.778590864 9.75 9.778 9.659 9.205 8.47 G0IVe 102 0
7 NAME LMC G 05 23 34.6 -69 45 22     0.4     ~ 17438 0
8 NAME Ori Trapezium OpC 05 35 16.5 -05 23 14           ~ 1619 1
9 NAME Orion Bright Bar reg 05 35 22.30 -05 24 33.0           ~ 875 0
10 HD 233517 * 08 22 46.7147840400 +53 04 49.230337440   10.85 9.71     K2 90 0
11 IC 2574 AG? 10 28 23.6148831408 +68 24 43.440012756 11.70 11.07 10.87 10.74   ~ 665 1
12 Mrk 33 AG? 10 32 31.956 +54 24 03.53 13.29 13.66 13.13 12.71 12.27 ~ 368 1
13 NGC 3521 G 11 05 48.5680991376 -00 02 09.245076540 10.06 9.83 9.02 10.1 9.6 ~ 817 2
14 M 51 Sy2 13 29 52.698 +47 11 42.93   9.26 8.36 8.40   ~ 4330 4
15 CPD-36 6759 Y*O 15 15 48.4460065200 -37 09 16.024369824   9.21 8.708     F8V 463 1
16 HD 135344 * 15 15 48.9462675744 -37 08 55.731368400   7.84 7.76     A0V 143 1
17 NAME Ophiuchus Molecular Cloud SFR 16 28 06 -24 32.5           ~ 3631 1
18 NGC 6618 OpC 18 20 47 -16 10.3           ~ 1615 0
19 CORNISH G029.9559-00.0168 Y*O 18 46 04.18 -02 39 21.3           ~ 365 0
20 NGC 6822 G 19 44 56.199 -14 47 51.29   18 8.1     ~ 1562 0
21 Schulte 12 s*b 20 32 40.9572199728 +41 14 29.279036940 16.1 14.45 11.702     B3-4Ia+ 424 0
22 NGC 7023 RNe 21 01 36.9 +68 09 48           ~ 703 0
23 NGC 7027 PN 21 07 01.571952 +42 14 10.47120   10.358 8.831 10.157   ~ 2459 1

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