International audienceContext. Radio pulses from pulsars are affected by plasma dispersion, which results in a frequency-dependent propagation delay. Variations in the magnitude of this effect lead to an additional source of red noise in pulsar timing experiments, including pulsar timing arrays (PTAs) that aim to detect nanohertz gravitational waves.Aims. We aim to quantify the time-variable dispersion with much improved precision and characterise the spectrum of these variations.Methods. We use the pulsar timing technique to obtain highly precise dispersion measure (DM) time series. Our dataset consists of observations of 36 millisecond pulsars, which were observed for up to 7.1 yr with the LOw Frequency ARray (LOFAR) telescope at a centre...
International audienceContext. High-precision pulsar-timing experiments are affected by temporal var...
We present high-precision timing data over time spans of up to 11 years for 45 millisecond pulsars o...
Kondratiev VI, Verbiest J, Hessels JWT, et al. A LOFAR census of millisecond pulsars. ASTRONOMY &...
International audienceContext. Radio pulses from pulsars are affected by plasma dispersion, which re...
Context. Radio pulses from pulsars are affected by plasma dispersion, which results in a frequency-d...
We aim to construct a Galactic-scale detector comprised of an array of pulsars distributed across th...
High-precision timing of millisecond pulsars (MSPs) over years to decades is a promising technique f...
The dispersion measure (DM), the column density of free electrons to a pulsar, is shown to be freque...
The dispersion measure (DM), the column density of free electrons to a pulsar, is shown to be freque...
Context. Pulsar radio emission undergoes dispersion due to the presence of free electrons in the int...
International audienceContext. High-precision pulsar timing requires accurate corrections for disper...
Dispersion in the interstellar medium is a well known phenomenon that follows a simple relationship,...
We present high-precision timing data over time spans of up to 11 years for 45 millisecond pulsars o...
International audienceContext. High-precision pulsar-timing experiments are affected by temporal var...
We present high-precision timing data over time spans of up to 11 years for 45 millisecond pulsars o...
Kondratiev VI, Verbiest J, Hessels JWT, et al. A LOFAR census of millisecond pulsars. ASTRONOMY &...
International audienceContext. Radio pulses from pulsars are affected by plasma dispersion, which re...
Context. Radio pulses from pulsars are affected by plasma dispersion, which results in a frequency-d...
We aim to construct a Galactic-scale detector comprised of an array of pulsars distributed across th...
High-precision timing of millisecond pulsars (MSPs) over years to decades is a promising technique f...
The dispersion measure (DM), the column density of free electrons to a pulsar, is shown to be freque...
The dispersion measure (DM), the column density of free electrons to a pulsar, is shown to be freque...
Context. Pulsar radio emission undergoes dispersion due to the presence of free electrons in the int...
International audienceContext. High-precision pulsar timing requires accurate corrections for disper...
Dispersion in the interstellar medium is a well known phenomenon that follows a simple relationship,...
We present high-precision timing data over time spans of up to 11 years for 45 millisecond pulsars o...
International audienceContext. High-precision pulsar-timing experiments are affected by temporal var...
We present high-precision timing data over time spans of up to 11 years for 45 millisecond pulsars o...
Kondratiev VI, Verbiest J, Hessels JWT, et al. A LOFAR census of millisecond pulsars. ASTRONOMY &...