1997The Astrophysical JournalOpen access

A Bipolar, Knotty Outflow with Velocities of 500 Kilometers per Second or above from the Engraved Hourglass Planetary Nebula M[CLC]y[/CLC]C[CLC]n[/CLC] 18

M. Bryce, J. A. López, A. J. Holloway, J. Meaburn

Open full text 55 citations

Abstract

High spectral resolution observations of the [N II] 6548 + 6584 Å and Hα emission lines from the young planetary nebula MyCn 18 have been obtained using the Manchester echelle spectrometer combined with the Anglo-Australian Telescope. These spatially resolved spectra reveal not only the kinematical characteristics of the two bright rings of emission, which define the well-known "engraved hourglass" structure of this object, but also the dramatic motions of the faint, irregular knots of emission observed outside the main nebular structure. The knots are moving with velocities ≥500 km s -1 away from the central star, an order of magnitude faster than the motions observed from the main nebula, making them among the highest velocity outflows ever observed from a planetary nebula. A bipolar, rotating, episodic jet mechanism is favored for their origin.

Open-access reader

About this research paper

What this paper is about

High spectral resolution observations of the [N II] 6548 + 6584 Å and Hα emission lines from the young planetary nebula MyCn 18 have been obtained using the Manchester echelle spectrometer combined with the Anglo-Australian Telescope. These spatially resolved spectra reveal not only the kinematical characteristics of the two bright rings of emission, which define the well-known "engraved hourglass" structure of this object, but also the dramatic motions of the faint, irregular knots of emission observed outside the main nebular structure. The knots are moving with velocities ≥500 km s -1 away from the central star, an order of magnitude faster than the motions observed from the main nebula, making them among the highest velocity outflows ever observed from a planetary nebula. A bipolar, rotating, episodic jet mechanism is favored for their origin.

Why it matters

OpenAlex reports 55 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

High spectral resolution observations of the [N II] 6548 + 6584 Å and Hα emission lines from the young planetary nebula MyCn 18 have been obtained using the Manchester echelle spectrometer combined with the Anglo-Australian Telescope. These spatially resolved spectra reveal not only the kinematical characteristics of the two bright rings of emission, which define the well-known "engraved hourglass" structure of this object, but also the dramatic motions of the faint, irregular knots of emission observed outside the main nebular structure. The knots are moving with velocities ≥500 km s -1 away from the central star, an order of magnitude faster than the motions observed from the main nebula, making them among the highest velocity outflows ever observed from a planetary nebula. A bipolar, rotating, episodic jet mechanism is favored for their origin.

Key concepts: Planetary nebula, Nebula, Bipolar nebula, Physics, Hourglass, Bipolar outflow, Astrophysics, Emission nebula

Related papers

Back to paper searchBrowse research topicsOriginal source
A Bipolar, Knotty Outflow with Velocities of 500 Kilometers per Second or above from the Engraved Hourglass Planetary Nebula M[CLC]y[/CLC]C[CLC]n[/CLC] 18 — Research Paper | ScholarLens