Using data from the Large European Array for Pulsars, and the Effelsberg telescope, we study the scintillation parameters of the millisecond pulsar PSR J0613-0200 over a 7 yr timespan. The 'secondary spectrum' - the 2D power spectrum of scintillation - presents the scattered power as a function of time delay, and contains the relative velocities of the pulsar, observer, and scattering material. We detect a persistent parabolic scintillation arc, suggesting scattering is dominated by a thin, anisotropic region. The scattering is poorly described by a simple exponential tail, with excess power at high delays; we measure significant, detectable scattered power at times out to ~5 μs, and measure the bulk scattering delay to be between 50 to 200...
The radiomillisecond pulsar J1713+0747 is regarded as one of the highest-precision clocks in the sky...
Pulsars are rapidly rotating neutron stars that emit concentrated beams of radiation from their magn...
Signals from radio pulsars show a wavelength-dependent delay due to dispersion in the interstellar p...
Using data from the Large European Array for Pulsars, and the Effelsberg telescope, we study the sci...
International audienceUsing data from the Large European Array for Pulsars, and the Effelsberg teles...
We present the first large sample of scintillation arcs in millisecond pulsars (MSPs), analysing 12 ...
Delay due to multipath scattering in the interstellar medium is a concern for high-precision pulsar ...
Context. Interstellar scintillation analysis of pulsars allows us to probe the small-scale distribut...
International audienceWe present the first large sample of scintillation arcs in millisecond pulsars...
Context. Interstellar scintillation analysis of pulsars allows us to probe the small-scale distribut...
Liu Y, Verbiest J, Main RA, et al. Long-term scintillation studies of EPTA pulsars, I. Observations ...
International audienceContext. Interstellar scintillation analysis of pulsars allows us to probe the...
Pulsars are natural clocks that can be used as laboratories for strong-field gravity, and as sensiti...
The radiomillisecond pulsar J1713+0747 is regarded as one of the highest-precision clocks in the sky...
Pulsars are rapidly rotating neutron stars that emit concentrated beams of radiation from their magn...
Signals from radio pulsars show a wavelength-dependent delay due to dispersion in the interstellar p...
Using data from the Large European Array for Pulsars, and the Effelsberg telescope, we study the sci...
International audienceUsing data from the Large European Array for Pulsars, and the Effelsberg teles...
We present the first large sample of scintillation arcs in millisecond pulsars (MSPs), analysing 12 ...
Delay due to multipath scattering in the interstellar medium is a concern for high-precision pulsar ...
Context. Interstellar scintillation analysis of pulsars allows us to probe the small-scale distribut...
International audienceWe present the first large sample of scintillation arcs in millisecond pulsars...
Context. Interstellar scintillation analysis of pulsars allows us to probe the small-scale distribut...
Liu Y, Verbiest J, Main RA, et al. Long-term scintillation studies of EPTA pulsars, I. Observations ...
International audienceContext. Interstellar scintillation analysis of pulsars allows us to probe the...
Pulsars are natural clocks that can be used as laboratories for strong-field gravity, and as sensiti...
The radiomillisecond pulsar J1713+0747 is regarded as one of the highest-precision clocks in the sky...
Pulsars are rapidly rotating neutron stars that emit concentrated beams of radiation from their magn...
Signals from radio pulsars show a wavelength-dependent delay due to dispersion in the interstellar p...