Follow-up timing of 12 pulsars discovered in Commensal Radio Astronomy FAST Survey
D. Zhao, J. P. Yuan, N. Wang, D. Li, P. Wang, M. Y. Xue, W. W. Zhu, C., C. Miao, W. M. Yan, J. B. Wang, J. M. Yao, Q. D. Wu, S. Q. Wang, S. N. Sun,, F. F. Kou, Y. T. Chen, S. J. Dang, Y. Feng, Z. J. Liu, X. L. Miao, L. Q., Meng, M. Yuan, C. H. Niu, J. R. Niu, L. Qian, S. Wang

TL;DR
This paper reports detailed timing, polarization, and rotation measurements of 12 pulsars discovered by FAST, revealing phenomena like subpulse drifting, nulling, and a potential MSP-He WD binary, enriching pulsar population data and testing theories.
Contribution
It provides the first phase-connected ephemerides and polarization data for these pulsars, including a candidate MSP-He WD binary, and extends the pulsar sample beyond the traditional death line.
Findings
Detection of subpulse drifting in PSR J1840+2843
Observation of pulse nulling in five pulsars
Identification of a potential MSP-He WD binary system
Abstract
We present phase-connected timing ephemerides, polarization pulse profiles and Faraday rotation measurements of 12 pulsars discovered by the Five-hundred-meter Aperture Spherical radio Telescope (FAST) in the Commensal Radio Astronomy FAST Survey (CRAFTS). The observational data for each pulsar span at least one year. Among them, PSR J1840+2843 shows subpulse drifting, and five pulsars are detected to exhibit pulse nulling phenomena. PSR J06400139 and PSR J20311254 are isolated MSPs with stable spin-down rates () of 10\,s\,s and 10\,s\,s, respectively. Additionally, one pulsar (PSR J16020611) is in a neutron star - white dwarf binary system with 18.23-d orbit and a companion of 0.65M. PSR J16020611 has a spin period, companion mass, and orbital eccentricity that are consistent with…
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Taxonomy
TopicsPulsars and Gravitational Waves Research · Geophysics and Gravity Measurements · Radio Astronomy Observations and Technology
