Search for the optical counterpart of the nearby pulsar J0108-1431
Roberto P. Mignani, Richard N. Manchester, George G. Pavlov
Abstract
We present the results of first deep optical observations of the field of the old ( 108 yr), nearby, isolated pulsar J0108-1431, in an attempt to detect its optical counterpart. The observations were performed using the FORS1 instrument at the focus of the European Southern Observatory Antu Telescope of the VLT. Observations with the Australia Telescope Compact Array (ATCA) were made to determine an accurate position for the radio pulsar at the current epoch. The imaging data, obtained in the V, B, and U passbands reveal no counterpart at the revised radio position down to V 28, B 28.6 and U 26.4. For a distance of 130 pc, estimated from the pulsar's dispersion measure, our constraints on the optical flux put an upper limit of T=4.5× 104 K for the surface temperature of the neutron star, assuming a stellar radius R∞=13 km. Our new radio position allows us to place an upper limit on the pulsar proper motion of 82 mas yr-1 which, for d=130 pc, implies a transverse velocity 50 km sec-1.
Create a lesson
Related papers
On binary pulsars and the force of gravity
Davor Palle
Tidal torques. A critical review of some techniques
Michael Efroimsky, James G. Williams
Dynamics of a Spherical Accretion Shock with Neutrino Heating and Alpha-Particle Recombination
Rodrigo Fernández, Christopher Thompson
Asymptotically FRW black holes
J. T. Firouzjaee, Reza Mansouri
Reaction of Accretion Disks to Abrupt Mass Loss During Binary Black Hole Merger
Sean M. O'Neill, M. Coleman Miller, Tamara Bogdanovic et al.
A Gamma-Ray Burst/Pulsar for Cosmic-Ray Positrons with a Dark Matter-like Spectrum
Kunihito Ioka