VLT optical observations of the isolated neutron star RX J0420.0-5022
R. P. Mignani (UCL-MSSL), C. Motch (CNRS, Universite' de Strasbourg,, Observatoire Astronomique), F. Haberl (MPE), S. Zane (UCL-MSSL), R. Turolla, (University of Padua), A. Schwope (Astrophysikalisches Institut Potsdam)

TL;DR
This study used VLT optical observations to investigate the faint optical counterpart of the isolated neutron star RX J0420.0-5022, finding marginal evidence for its detection and discussing implications for neutron star surface emission.
Contribution
The paper provides a re-analysis of previous VLT data and presents deeper observations, offering new insights into the optical counterpart of RX J0420.0-5022 and its potential detection.
Findings
Marginal (~3.9 sigma) detection of a faint optical source near the neutron star's position.
The detected flux rules out a >7 optical excess compared to X-ray spectrum extrapolation.
The candidate counterpart's position is consistent with the neutron star's proper motion upper limit.
Abstract
X-ray observations performed with ROSAT led to the discovery of 7 radio-silent isolated neutron stars (INSs) which are detected only through the relatively dim and purely thermal X-ray emission from the cooling star surface. A few of these INSs (a.k.a. X-ray Dim INSs, or XDINSs) have been also detected at optical wavelengths where they seem to feature thermal spectra. Optical studies of XDINSs thus play a crucial role in mapping the temperature distribution on the neutron star surface and in investigating the existence of an atmosphere around the neutron star. The aim of this work is to investigate the optical identification of the XDINS RX J0420.0-5022, tentatively proposed by Haberl et al. (2004) based on VLT observations. We re-analysed the original observations of Haberl et al. to assess the detection significance of the proposed counterpart and we performed deeper VLT observations…
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Taxonomy
TopicsAstrophysical Phenomena and Observations · Pulsars and Gravitational Waves Research · Stellar, planetary, and galactic studies
