Variability, polarimetry, and timing properties of single pulses from PSR J1713+0747 using the Large European Array for Pulsars
K. Liu, C. G. Bassa, G. H. Janssen, R. Karuppusamy, J. McKee, M., Kramer, K. J. Lee, D. Perrodin, M. Purver, S. Sanidas, R. Smits, B. W., Stappers, P. Weltevrede, W. W. Zhu

TL;DR
This study analyzes single pulses from PSR J1713+0747 using LEAP data, revealing polarization modes, sub-pulse drifting, and variability effects crucial for pulsar timing precision.
Contribution
It provides detailed statistical analysis of single pulse properties, including polarization, drifting modes, and their impact on timing accuracy, which is novel for this pulsar.
Findings
Detected two sub-pulse drifting modes with 7 and 3 pulse periods.
Identified two orthogonal polarization modes in the pulses.
Showed phase jitter can be modeled as Gaussian with at least 100 pulses.
Abstract
Single pulses preserve information about the pulsar radio emission and propagation in the pulsar magnetosphere, and understanding the behaviour of their variability is essential for estimating the fundamental limit on the achievable pulsar timing precision. Here we report the findings of our analysis of single pulses from PSR J1713+0747 with data collected by the Large European Array for Pulsars (LEAP). We present statistical studies of the pulse properties that include distributions of their energy, phase and width. Two modes of systematic sub-pulse drifting have been detected, with a periodicity of 7 and 3 pulse periods. The two modes appear at different ranges of pulse longitude but overlap under the main peak of the integrated profile. No evidence for pulse micro-structure is seen with a time resolution down to 140 ns. In addition, we show that the fractional polarisation of single…
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