The First CHIME/FRB Fast Radio Burst Catalog
The Astrophysical Journal Supplement Series American Astronomical Society 257:2 (2021) 59
First Discovery of New Pulsars and RRATs with CHIME/FRB
The Astrophysical Journal American Astronomical Society 922:1 (2021) 43-43
Abstract:
Abstract We report the discovery of seven new Galactic pulsars with the Canadian Hydrogen Intensity Mapping Experiment鈥檚 Fast Radio Burst (CHIME/FRB) backend. These sources were first identified via single pulses in CHIME/FRB, then followed up with CHIME/Pulsar. Four sources appear to be rotating radio transients, pulsar-like sources with occasional single-pulse emission with an underlying periodicity. Of those four sources, three have detected periods ranging from 220 ms to 2.726 s. Three sources have more persistent but still intermittent emission and are likely intermittent or nulling pulsars. We have determined phase-coherent timing solutions for the latter two. These seven sources are the first discovery of previously unknown Galactic sources with CHIME/FRB and highlight the potential of fast radio burst detection instruments to search for intermittent Galactic radio sources.Refined Mass and Geometric Measurements of the High-mass PSR J0740+6620
The Astrophysical Journal Letters American Astronomical Society 915:1 (2021) L12-L12
Abstract:
The nuclear matter equation of state is relatively well constrained at sub-saturation densities thanks to the knowledge from nuclear physics. However, studying its behavior at supra-saturation densities is a challenging task. Fortunately, the extraordinary progress recently made in observations of neutron stars and neutron star mergers has provided us with unique opportunities to unfold the properties of dense matter. Under the assumption that nucleons are the only constituents of neutron star cores, we perform a Bayesian inference using the so-called meta-modeling technique with a nuclear-physics-informed prior. The latest information from the GW170817 event by the LIGO-Virgo Collaboration (LVC) and from the radius measurement of the heaviest known neutron star PSR J0740+6620 by the Neutron Star Interior Composition Explorer (NICER) telescope and X-ray Multi-Mirror (XMM-Newton) are taken into account as likelihoods in the analysis. The impacts of different constraints on the equation of state as well as on the predictions of neutron star properties are discussed. The obtained posterior reveals that all the current observations are fully compatible with the nucleonic hypothesis. Strong disagreements between our results with future data can be identified as a signal for the existence of exotic degrees of freedom.Comment: Contribution to the "Journees de Rencontre des Jeunes Chercheurs (JRJC) 2021" proceedingThe CHIME Pulsar Project: System Overview
The Astrophysical Journal Supplement Series American Astronomical Society 255:1 (2021) 5
High precision measurements of interstellar dispersion measure with the upgraded GMRT
Astronomy & Astrophysics EDP Sciences 651 (2021) A5-A5