The Herschel Planetary Nebula Survey (HerPlaNS): A Comprehensive Dusty Photoionization Model of NGC6781.

IF 8.6 1区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
Astrophysical Journal Supplement Series Pub Date : 2017-08-01 Epub Date: 2017-08-18 DOI:10.3847/1538-4365/aa8175
Masaaki Otsuka, Toshiya Ueta, Peter A M van Hoof, Raghvendra Sahai, Isabel Aleman, Albert A Zijlstra, You-Hua Chu, Eva Villaver, Marcelo L Leal-Ferreira, Joel Kastner, Ryszard Szczerba, Katrina M Exter
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引用次数: 21

Abstract

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 Image

Abstract Image

赫歇尔行星状星云巡天(HerPlaNS): NGC6781的尘埃光电离综合模型。
我们对行星状星云(PN) NGC 6781进行了全面的分析,以研究其电离,原子和分子气体和尘埃成分的物理条件以及物体的演化,基于从紫外线到无线电的全色观测数据。经验星云元素丰度与渐近巨支(AGB)恒星核合成模型的理论预测相比较,表明其祖先是一颗太阳金属丰度为2.25-3.0 M⊙的初始质量恒星。我们通过将恒星亮度(作为距离和中心恒星有效温度的函数)与所采用的agb后进化轨迹拟合,得到了0.46 kpc的最佳拟合距离。我们的激发能图分析表明,在星云电离部分以外的光解区(PDR)存在高激发温度,这表明缓慢的AGB风和快速的PN风之间的激波相互作用产生了额外的加热。通过使用具有经验推导约束的Cloudy代码进行迭代拟合,我们找到了最适合的天体尘埃光电离模型,该模型将包括再现所有采用的全色观测数据。估计的总气体质量(0.41 M⊙)与预测的2.5 M⊙初始质量恒星在最后一次AGB热脉冲事件中喷射出的质量相对应。PDR占总质量的很大一部分(约70%),证明PDR在PNe中至关重要,PDR通常被认为是电离/H+区域的标志。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Astrophysical Journal Supplement Series
Astrophysical Journal Supplement Series 地学天文-天文与天体物理
CiteScore
14.50
自引率
5.70%
发文量
264
审稿时长
2 months
期刊介绍: The Astrophysical Journal Supplement (ApJS) serves as an open-access journal that publishes significant articles featuring extensive data or calculations in the field of astrophysics. It also facilitates Special Issues, presenting thematically related papers simultaneously in a single volume.
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