Three Pulsars Discovered by FAST in the Globular Cluster NGC 6517 with a Pulsar Candidate Sifting Code Based on Dispersion Measure to Signal-to-Noise Ratio Plots
Zhichen Pan, Xiaoyun Ma, Lei Qian, Lin Wang, Zhen Yan, Jintao Luo,, Scott M. Ransom, Duncan R. Lorimer, Peng Jiang

TL;DR
This paper reports the discovery of three new pulsars in the globular cluster NGC 6517 using FAST, along with updated timing solutions, employing a novel candidate sifting algorithm based on dispersion measure to signal-to-noise ratio plots.
Contribution
The paper introduces a new pulsar candidate sifting code based on dispersion measure to SNR plots and reports the discovery of three pulsars in NGC 6517, expanding the cluster's known pulsar population.
Findings
Discovered three new pulsars in NGC 6517 with FAST.
Updated timing solutions for known pulsars in the cluster.
NGC 6517 now has 9 pulsars, ranking 5th among globular clusters.
Abstract
We report the discovery of three new pulsars in the Globular Cluster (GC) NGC6517, namely NGC 6517 E, F, and G, made with the Five-hundred-meter Aperture Spherical radio Telescope (FAST). The spin periods of NGC 6517 E, F, and G are 7.60~ms, 24.89~ms, and 51.59~ms, respectively. Their dispersion measures are 183.29, 183.713, and 185.3~pc~cm, respectively, all slightly larger than those of the previously known pulsars in this cluster. The spin period derivatives are at the level of 110~s~s, which suggests these are recycled pulsars. In addition to the discovery of these three new pulsars, we updated the timing solutions of the known isolated pulsars, NGC 6517 A, C, and D. The solutions are consistent with those from Lynch et al. (2011) and with smaller timing residuals. From the timing solution, NGC 6517 A, B (position from Lynch et al. 2011), C, E, and F…
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