The constant-velocity highly collimated outflows of the planetary nebula He 2-90
Abstract
We present high-dispersion echelle spectroscopic observations and a narrow-band [N II] image of the remarkable jet-like features of He 2-90. They are detected in the echelle spectra in the H-alpha and [N II] lines but not in other nebular lines. The [N II]/H-alpha ratio is uniformly high, ~1. The observed kinematics reveals bipolar collimated outflows in the jet-like features and shows that the southeast (northwest) component expands towards (away from) the observer at a remarkably constant line-of-sight velocity, 26.0+-0.5 km/s. The observed expansion velocity and the opening angle of the jet-like features are used to estimate an inclination angle of ~5 degrees with respect to the sky plane and a space expansion velocity of ~290 km/s. The spectrum of the bright central nebula reveals a profusion of Fe lines and extended wings of the H-alpha line, similar to those seen in symbiotic stars and some young planetary nebulae that are presumed to host a mass-exchanging binary system. If this is the case for He 2-90, the constant velocity and direction of the jets require a very stable dynamic system against precession and warping.
Cite
@article{arxiv.astro-ph/0108345,
title = {The constant-velocity highly collimated outflows of the planetary nebula He 2-90},
author = {Martin A. Guerrero and Luis F. Miranda and You-Hua Chu and Monica Rodriguez and Rosa M. Williams},
journal= {arXiv preprint arXiv:astro-ph/0108345},
year = {2009}
}
Comments
8 pages (emulate ApJ), 5 figure, 1 table