Strings in the η Carinae Nebula: Hypersonic Radiative Cosmic Bullets

We present the results of a numerical study focusing on the propagation of a hypersonic bullet subject to radiative cooling. Our goal is to explore the feasibility of such a model for the formation of "strings" observed in the eta Carinae Homunculus nebula. Our simulations were performed i...

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Published inThe Astrophysical journal Vol. 613; no. 1; pp. 387 - 392
Main Authors Poludnenko, A. Y, Frank, A, Mitran, S
Format Journal Article
LanguageEnglish
Published Chicago, IL IOP Publishing 20.09.2004
University of Chicago Press
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ISSN0004-637X
1538-4357
DOI10.1086/422988

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Abstract We present the results of a numerical study focusing on the propagation of a hypersonic bullet subject to radiative cooling. Our goal is to explore the feasibility of such a model for the formation of "strings" observed in the eta Carinae Homunculus nebula. Our simulations were performed in cylindrical symmetry with the adaptive mesh refinement code AstroBEAR. The radiative cooling of the system was followed using the cooling curve described by Dalgarno and McCray. In this paper we discuss the evolution and overall morphology of the system as well as key kinematic properties. We find that radiative bullets can produce structures with properties similar to those of the eta Carinae strings, i.e. high length-to-width ratios and Hubble-type flows in the form of a linear velocity increase from the base of the wake to the bullet head. These features, along with the appearance of periodic "ringlike" structures, may also make this model applicable to other astrophysical systems such as planetary nebulae, e.g. CRL 618 and NGC 6543, young stellar objects, etc.
AbstractList We present the results of a numerical study focusing on the propagation of a hypersonic bullet subject to radiative cooling. Our goal is to explore the feasibility of such a model for the formation of "strings" observed in the eta Carinae Homunculus nebula. Our simulations were performed in cylindrical symmetry with the adaptive mesh refinement code AstroBEAR. The radiative cooling of the system was followed using the cooling curve described by Dalgarno and McCray. In this paper we discuss the evolution and overall morphology of the system as well as key kinematic properties. We find that radiative bullets can produce structures with properties similar to those of the eta Carinae strings, i.e. high length-to-width ratios and Hubble-type flows in the form of a linear velocity increase from the base of the wake to the bullet head. These features, along with the appearance of periodic "ringlike" structures, may also make this model applicable to other astrophysical systems such as planetary nebulae, e.g. CRL 618 and NGC 6543, young stellar objects, etc.
Author Frank, A
Mitran, S
Poludnenko, A. Y
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Issue 1
Keywords Stellar winds
Cylindrical symmetry
Cooling
Morphology
Digital simulation
Mass loss
Hypersonic flow
Circumstellar matter
Planetary nebulae
Mesh method
Luminous blue variable star
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SubjectTerms Astronomy
Earth, ocean, space
Exact sciences and technology
Interstellar medium (ism) and nebulae in milky way
Planetary nebulae
Stellar systems. Galactic and extragalactic objects and systems. The universe
Title Strings in the η Carinae Nebula: Hypersonic Radiative Cosmic Bullets
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