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相关论文: Abundances of s-process elements in planetary nebu…

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The s-process should occur in all but the lower mass progenitor stars of planetary nebulae, and this should be reflected in the chemical composition of the gas which is expelled to create the current planetary nebula shell. Weak forbidden…

We present the results of a large-scale survey of neutron(n)-capture elements in Galactic planetary nebulae (PNe), undertaken to study enrichments from s-process nucleosynthesis in their progenitor stars. From new K band observations of…

天体物理学 · 物理学 2009-11-13 N. C. Sterling , Harriet L. Dinerstein

We present preliminary results from a large-scale survey of the neutron(n)-capture elements Se and Kr in Galactic planetary nebulae (PNe). These elements may be produced in PN progenitors by s-process nucleosynthesis, and brought to the…

天体物理学 · 物理学 2009-11-11 N. C. Sterling , Harriet L. Dinerstein

We present results from an ongoing survey of infrared emission lines from the neutron-capture elements Se and Kr in Galactic planetary nebulae (PNe). Se and Kr may be produced in the initial steps of the s-process during the asymptotic…

天体物理学 · 物理学 2007-05-23 N. C. Sterling , H. L. Dinerstein

Spectroscopy of planetary nebulae (PNe) provides the means to investigate s-process enrichments of neutron(n)-capture elements that cannot be detected in asymptotic giant branch (AGB) stars. However, accurate abundance determinations of…

(Abridged) The chemical content of the planetary nebula NGC 3918 is investigated through deep, high-resolution UVES at VLT spectrophotometric data. We identify and measure more than 750 emission lines, making ours one of the deepest spectra…

太阳与恒星天体物理 · 物理学 2015-08-06 J. García-Rojas , S. Madonna , V. Luridiana , N. C. Sterling , C. Morisset , G. Delgado-Inglada , L. Toribio San Cipriano

Planetary nebulae retain the signature of the nucleosynthesis and mixing events that occurred during the previous AGB phase. Observational signatures complement observations of AGB and post-AGB stars and their binary companions. The…

太阳与恒星天体物理 · 物理学 2017-11-15 Maria Lugaro , Amanda I. Karakas , Marco Pignatari , Carolyn L. Doherty

The determination of heavy element abundances from planetary nebula (PN) spectra provides an exciting opportunity to study the nucleosynthesis occurring in the progenitor asymptotic giant branch (AGB) star. We perform post-processing…

太阳与恒星天体物理 · 物理学 2015-05-14 Amanda I. Karakas , Maria Lugaro

We present results from an ongoing survey of the infrared emission lines [Kr III] 2.199 and [Se IV] 2.287 micron in Galactic planetary nebulae (PNe). Krypton and selenium may be produced by slow neutron-capture nucleosynthesis (the…

天体物理学 · 物理学 2007-05-23 N. C. Sterling , H. L. Dinerstein

We have identified two new near-infrared emission lines in the spectra of planetary nebulae (PNe) arising from heavy elements produced by neutron capture reactions: [Te III] 2.1019 $\mu$m and [Br V] 1.6429 $\mu$m. [Te III] was detected in…

We present deep, high-resolution (R~40000) UVES at VLT spectrophotometric data of the planetary nebula NGC 3918. This is one of the deepest spectra ever taken of a planetary nebula. We have identified and measured more than 700 emission…

太阳与恒星天体物理 · 物理学 2014-12-08 J. García-Rojas , S. Madonna , V. Luridiana , N. C. Sterling , C. Morisset

We present results from the first large-scale survey of neutron(n)-capture element abundances in planetary nebulae (PNe). This survey was motivated by the fact that a PN may be enriched in n-capture elements if its progenitor star…

天体物理学 · 物理学 2007-08-10 N. C. Sterling , Harriet L. Dinerstein , T. R. Kallman

The detection of neutron(n)-capture elements in several planetary nebulae (PNe) has provided a new means of investigating s-process nucleosynthesis in low-mass stars. However, a lack of atomic data has inhibited accurate trans-iron element…

太阳与恒星天体物理 · 物理学 2015-06-17 N. C. Sterling , R. L. Porter , H. L. Dinerstein

Type I planetary nebulae (PNe) have high He/H and N/O ratios and are thought to be descendants of stars with initial masses of ~3-8Msun. These characteristics indicate that the progenitor stars experienced proton-capture nucleosynthesis at…

天体物理学 · 物理学 2008-12-18 Amanda I. Karakas , Mark A. van Raai , Maria Lugaro , N. C. Sterling , Harriet L. Dinerstein

We explore the elemental abundances in Galactic planetary nebulae (PNe) compared with those of their stellar progenitors (Red Giant Branch and Asymptotic Giant Branch, RGB and AGB, stars), to explore and quantify the expected -- i.e., due…

星系天体物理 · 物理学 2024-07-09 Letizia Stanghellini , Verne V. Smith , Katia Cunha , Nikos Prantzos

The elemental abundances of ten planetary nebulae, derived with high accuracy including ISO and IUE spectra, are analysed with the aid of synthetic evolutionary models for the TP-AGB phase. Model prescriptions are varied until we achieve…

天体物理学 · 物理学 2009-11-10 P. Marigo , J. Bernard-Salas , S. R. Pottasch , A. G. G. M. Tielens , P. R. Wesselius

[Abridged] Investigations of neutron(n)-capture element nucleosynthesis and chemical evolution have largely been based on stellar spectroscopy. However, the recent detection of these elements in several planetary nebulae (PNe) indicates…

Nebular spectroscopy is a valuable tool for assessing the production of heavy elements by slow neutron(n)-capture nucleosynthesis (the s-process). Several transitions of n-capture elements have been identified in planetary nebulae (PNe) in…

太阳与恒星天体物理 · 物理学 2020-06-16 N. C. Sterling

The origin of heavy r-process elements in the universe is still a matter of great debate, with a confirmed scenario being neutron star (NS) mergers. Additional relevant sites could be specific classes of events, such as gamma-ray burst…

高能天体物理现象 · 物理学 2025-10-15 Giacomo Ricigliano , Kenta Hotokezaka , Almudena Arcones

We have conducted a large-scale survey of 120 planetary nebulae (PNe) to search for the near-infrared emission lines [Kr III] 2.199 and [Se IV] 2.287 microns. The neutron(n)-capture elements Se and Kr may be enriched in a PN if its…

天体物理学 · 物理学 2007-05-23 N. C. Sterling , Harriet L. Dinerstein , T. R. Kallman
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