2017ApJS..231...22O


Query : 2017ApJS..231...22O

2017ApJS..231...22O - Astrophys. J., Suppl. Ser., 231, 22-22 (2017/August-0)

The Herschel Planetary Nebula Survey (HerPlaNS): a comprehensive dusty photoionization model of NGC6781.

OTSUKA M., UETA T., VAN HOOF P.A.M., SAHAI R., ALEMAN I., ZIJLSTRA A.A., CHU Y.-H., VILLAVER E., LEAL-FERREIRA M.L., KASTNER J., SZCZERBA R. and EXTER K.M.

Abstract (from CDS):

We perform a comprehensive analysis of the planetary nebula (PN) NGC 6781 to investigate the physical conditions of each of its ionized, atomic, and molecular gas and dust components and the object's evolution, based on panchromatic observational data ranging from UV to radio. Empirical nebular elemental abundances, compared with theoretical predictions via nucleosynthesis models of asymptotic giant branch (AGB) stars, indicate that the progenitor is a solar-metallicity, 2.25–3.0 M initial-mass star. We derive the best-fit distance of 0.46 kpc by fitting the stellar luminosity (as a function of the distance and effective temperature of the central star) with the adopted post-AGB evolutionary tracks. Our excitation energy diagram analysis indicates high-excitation temperatures in the photodissociation region (PDR) beyond the ionized part of the nebula, suggesting extra heating by shock interactions between the slow AGB wind and the fast PN wind. Through iterative fitting using the Cloudy code with empirically derived constraints, we find the best-fit dusty photoionization model of the object that would inclusively reproduce all of the adopted panchromatic observational data. The estimated total gas mass (0.41 M) corresponds to the mass ejected during the last AGB thermal pulse event predicted for a 2.5 M initial-mass star. A significant fraction of the total mass (about 70%) is found to exist in the PDR, demonstrating the critical importance of the PDR in PNe that are generally recognized as the hallmark of ionized/H+ regions.

Abstract Copyright: © 2017. The American Astronomical Society. All rights reserved.

Journal keyword(s): dust, extinction - ISM: abundances - planetary nebulae: individual: NGC 6781 - planetary nebulae: individual: NGC 6781

Simbad objects: 12

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Number of rows : 12
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 31 AGN 00 42 44.330 +41 16 07.50 4.86 4.36 3.44     ~ 12651 1
2 NAME Magellanic Clouds GrG 03 00 -71.0           ~ 7067 0
3 NGC 2346 PN 07 09 22.5215800440 -00 48 23.610997332   11.76 11.58     A5V 573 0
4 PG 1657+078 HS* 16 59 32.2150744512 +07 43 31.412466912 13.919 14.877 15.019 15.098 15.115 sdB 53 0
5 SA 110-246 PM* 18 41 50.7555804768 +00 05 04.507338480 13.163 13.292 12.706 12.325 11.916 ~ 7 0
6 M 57 PN 18 53 35.0967659112 +33 01 44.883287544   15.405 15.769 15.901 16.062 DA(O?) 831 2
7 NGC 6781 PN 19 18 28.085 +06 32 19.29     11.8     ~ 261 0
8 NGC 7027 PN 21 07 01.571952 +42 14 10.47120   10.358 8.831 10.157   ~ 2459 1
9 BD+28 4211 HS* 21 51 11.0221915656 +28 51 50.367627468 8.922 10.25 10.58 10.656 10.831 sdO2VIIIHe5 798 0
10 BD+17 4708 SB* 22 11 31.3756832854 +18 05 34.177983548 9.73 9.91 9.46 9.03 8.70 sdF8 569 0
11 NGC 7293 PN 22 29 38.5454047152 -20 50 13.747242408 11.894 13.158 13.524 13.689 13.898 DAO.5 943 0
12 NAME Galactic Bulge reg ~ ~           ~ 4299 0

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