2012ApJ...760...96G


Query : 2012ApJ...760...96G

2012ApJ...760...96G - Astrophys. J., 760, 96 (2012/November-3)

A cool dust factory in the Crab nebula: a Herschel study of the filaments.

GOMEZ H.L., KRAUSE O., BARLOW M.J., SWINYARD B.M., OWEN P.J., CLARK C.J.R., MATSUURA M., GOMEZ E.L., RHO J., BESEL M.-A., BOUWMAN J., GEAR W.K., HENNING Th., IVISON R.J., POLEHAMPTON E.T. and SIBTHORPE B.

Abstract (from CDS):

Whether supernovae are major sources of dust in galaxies is a long-standing debate. We present infrared and submillimeter photometry and spectroscopy from the Herschel Space Observatory of the Crab Nebula between 51 and 670 µm as part of the Mass Loss from Evolved StarS program. We compare the emission detected with Herschel with multiwavelength data including millimeter, radio, mid-infrared, and archive optical images. We carefully remove the synchrotron component using the Herschel and Planck fluxes measured in the same epoch. The contribution from line emission is removed using Herschel spectroscopy combined with Infrared Space Observatory archive data. Several forbidden lines of carbon, oxygen, and nitrogen are detected where multiple velocity components are resolved, deduced to be from the nitrogen-depleted, carbon-rich ejecta. No spectral lines are detected in the SPIRE wavebands; in the PACS bands, the line contribution is 5% and 10% at 70 and 100 µm and negligible at 160 µm. After subtracting the synchrotron and line emission, the remaining far-infrared continuum can be fit with two dust components. Assuming standard interstellar silicates, the mass of the cooler component is 0.24+0.32_- 0.08M☉_ for T = 28.1+5.5_- 3.2_K. Amorphous carbon grains require 0.11±0.01 M of dust with T = 33.8+2.3 _- 1.8_K. A single temperature modified blackbody with 0.14 M and 0.08 M for silicate and carbon dust, respectively, provides an adequate fit to the far-infrared region of the spectral energy distribution but is a poor fit at 24-500 µm. The Crab Nebula has condensed most of the relevant refractory elements into dust, suggesting the formation of dust in core-collapse supernova ejecta is efficient.

Abstract Copyright:

Journal keyword(s): dust, extinction - ISM: individual: Crab Nebula - ISM: supernova remnants - submillimeter: ISM

Simbad objects: 3

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Number of rows : 3
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 M 1 SNR 05 34 30.9 +22 00 53           ~ 6191 1
2 SN 1987A SN* 05 35 28.020 -69 16 11.07           SNIIpec 4936 2
3 3C 461 BL? 23 23 24.000 +58 48 54.00     14.30     ~ 2791 1

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