Proper motions of ROSAT discovered isolated neutron stars measured with Chandra: First X-ray measurement of the large proper motion of RX J1308.6+2127/RBS 1223
C. Motch, A. M. Pires, F. Haberl, A. Schwope, V.E. Zavlin

TL;DR
This study used Chandra's high-resolution X-ray observations to measure the proper motion of isolated neutron stars, discovering the second fastest proper motion among ROSAT-discovered INSs, indicating a young, high-velocity neutron star.
Contribution
First X-ray measurement of the large proper motion of RX J1308.6+2127/RBS 1223, demonstrating Chandra's capability for precise astrometry of neutron stars.
Findings
RX J1308.6+2127/RBS 1223 has a proper motion of ~223 mas/yr.
The neutron star's transverse velocity is approximately 740 km/s.
The star likely originated from the Scutum OB2 association about 0.8 Myr ago.
Abstract
The unprecedented spatial resolution of the Chandra observatory opens the possibility to detect with relatively high accuracy proper motions at X-ray wavelengths. We have conducted an astrometric study of three of the "Magnificent Seven", the thermally emitting radio quiet isolated neutron stars (INSs) discovered by ROSAT. These three INSs (RX J0420.0-5022, RX J0806.4-4123 and RX J1308.6+2127/RBS 1223) either lack an optical counterpart or have one too faint to be used for astrometric purposes. We obtained ACIS observations 3 to 5 years apart to constrain or measure the displacement of the sources on the X-ray sky using as reference the background of extragalactic or remote galactic X-ray sources. Upper limits of 138 mas/yr and 76 mas/yr on the proper motion of RX J0420.0-5022 and RX J0806.4-4123, respectively, have already been presented in Motch et al. (2007). Here we report the very…
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