HST observations rule out the association between Cir X-1 and SNR G321.9-0.3
arXiv:astro-ph/0202268 · doi:10.1051/0004-6361:20020224
Abstract
Cir X-1 is one of the most intriguing galactic X-ray sources. It is a ~16.6 days variable X/radio source, a type-I X-ray burster and a QPO emitter. In spite of an uncertain optical counterpart classification, all these properties identify the source as an LMXB. The morphology of the surrounding radio nebula has suggested an association with the nearby (~25 arcmin) SNR G321.9-0.3, implying that Cir X-1 is a runaway binary originated from the supernova explosion 10^5 years ago. To investigate this hypothesis, we carried out a proper motion measurement of the Cir X-1 m ~19 optical counterpart using a set of HST/WFC and WFPC2 observations taken ~8.6 years apart. We obtained a 3 sigma upper limit of ~5 mas/yr on the source proper motion. Since the runaway hypothesis would have implied a proper motion due North ranging between 15 and 75 mas/yr, depending on the actual age of the SNR, our result definitively rules out the association between Cir X-1 and SNR G321.9-0.3.
5 pages, 3 Postscript figures. Accepted for publications in A&A
References in corpus (3)
Cited by in corpus (12)
- Observing the effects of the event horizon in black holes
- The large-scale jet-powered radio nebula of Circinus X-1
- Long-term X-ray Variability of Circinus X-1
- On the Soft Excess in the X-ray Spectrum of Cir X-1: Revisitation of the Distance to Cir X-1
- A decade of radio imaging the relativistic outflow in the peculiar X-ray binary Circinus X-1
- X-ray behaviour of Circinus X-1 - I: X-ray Dips as a diagnostic of periodic behaviour
- What is the closest black hole to the Sun?
- A complete X-ray spectral coverage of the 2010 May-June outbursts of Circinus X-1
- X-ray Bursts in Neutron Star and Black Hole Binaries from USA and RXTE Data: Detections and Upper Limits
- Radio observations of Circinus X-1 over a complete orbit at an historically faint epoch
- Why are X-ray sources in the M31 Bulge so close to Planetary Nebulae?
- High-resolution radio observations of X-ray binaries