High-sensitivity radio-frequency observations of millisecond pulsars usually show stochastic, broad-band, pulse-shape variations intrinsic to the pulsar emission process. These variations induce jitter noise in pulsar timing observations; understanding the properties of this noise is of particular importance for the effort to detect gravitational waves with pulsar timing arrays. We assess the short-term profile and timing stability of 22 millisecond pulsars that are part of the Parkes Pulsar Timing Array sample by examining intraobservation arrival time variability and single-pulse phenomenology. In 7 of the 22 pulsars, in the band centred at approximately 1400 MHz, we find that the brightest observations are limited by intrinsic jitter. We...
We demonstrate that the sensitivity of high-precision pulsar timing experiments will be ultimately l...
The sensitivity of Pulsar Timing Arrays to gravitational waves (GWs) depends on the noise present in...
Pulsar timing array projects measure the pulse arrival times of millisecond pulsars for the primary ...
High-sensitivity radio-frequency observations of millisecond pulsars usually show stochastic, broad-...
High-sensitivity radio-frequency observations of millisecond pulsars usually show stochastic, broad-...
Low-frequency gravitational-wave experiments require the highest timing precision from an array of t...
International audienceThe radio millisecond pulsar J1713+0747 is regarded as one of the highest-prec...
Dolch T, Lam MT, Cordes J, et al. A 24-Hour Global Campaign To Assess Precision Timing of the Millis...
The radio millisecond pulsar J1713+0747 is regarded as one of the highest-precision clocks in the sk...
Timing pulses of pulsars has been proved to be the most powerful technique useful to a host of resea...
The radio millisecond pulsar J1713+0747 is regarded as one of the highest-precision clocks in the sk...
Caballero RN, Lee KJ, Lentati L, et al. The noise properties of 42 millisecond pulsars from the Euro...
We demonstrate that the sensitivity of high-precision pulsar timing experiments will be ultimately l...
The sensitivity of Pulsar Timing Arrays to gravitational waves (GWs) depends on the noise present in...
Pulsar timing array projects measure the pulse arrival times of millisecond pulsars for the primary ...
High-sensitivity radio-frequency observations of millisecond pulsars usually show stochastic, broad-...
High-sensitivity radio-frequency observations of millisecond pulsars usually show stochastic, broad-...
Low-frequency gravitational-wave experiments require the highest timing precision from an array of t...
International audienceThe radio millisecond pulsar J1713+0747 is regarded as one of the highest-prec...
Dolch T, Lam MT, Cordes J, et al. A 24-Hour Global Campaign To Assess Precision Timing of the Millis...
The radio millisecond pulsar J1713+0747 is regarded as one of the highest-precision clocks in the sk...
Timing pulses of pulsars has been proved to be the most powerful technique useful to a host of resea...
The radio millisecond pulsar J1713+0747 is regarded as one of the highest-precision clocks in the sk...
Caballero RN, Lee KJ, Lentati L, et al. The noise properties of 42 millisecond pulsars from the Euro...
We demonstrate that the sensitivity of high-precision pulsar timing experiments will be ultimately l...
The sensitivity of Pulsar Timing Arrays to gravitational waves (GWs) depends on the noise present in...
Pulsar timing array projects measure the pulse arrival times of millisecond pulsars for the primary ...