The High Time Resolution Universe Pulsar survey – XVIII. The reprocessing of the HTRU-S Low Lat survey around the Galactic Centre using a Fast Folding Algorithm pipeline for accelerated pulsars

Author:

Wongphechauxsorn J1ORCID,Champion D J1ORCID,Bailes M23,Balakrishnan V1ORCID,Barr E D1ORCID,Bernadich M C i1,Bhat N D R4ORCID,Burgay M5ORCID,Cameron A D23ORCID,Chen W1ORCID,Flynn C M L23ORCID,Jameson A23,Johnston S6ORCID,Keith M J7ORCID,Kramer M17,Ng C8ORCID,Possenti A59,Sengar R2310ORCID,Shannon R M23ORCID,Stappers B7ORCID,van Straten W1011ORCID

Affiliation:

1. Max-Planck-Institut für Radioastronomie , Auf dem Hügel 69, D-53121 Bonn , Germany

2. ARC Center of Excellence for Gravitational Wave Discovery (OzGrav), Swinburne University of Technology , Mail H11, PO Box 218, VIC 3122 , Australia

3. Centre for Astrophysics and Supercomputer, Swinburne University of Technology , PO Box 218, Hawthorn, Victoria 3122 , Australia

4. International Centre for Radio Astronomy Research, Curtin University , Bentley, WA 6102 , Australia

5. INAF - Osservatorio Astronomico di Cagliari , Via della Scienza 5, I-09047 Selargius (CA) , Italy

6. CSIRO Astronomy & Space Science, Australia Telescope National Facility, PO Box 76, Epping, NSW 1710, Australia

7. Jodrell Bank Center for Astrophysics, University of Manchester , Alan Turing Building, Oxford Road, Manchester M13 9PL , United Kingdom

8. Dunlap Institute for Astronomy & Astrophysics, University of Toronto , 50 St. George Street, Toronto, ON M5S 3H4 , Canada

9. Universitá di Cagliari, Department of Physics , S.P. Monserrato-Sestu Km 0,700 – I-09042 Monserrato , Italy

10. Center for Gravitation, Cosmology, and Astrophysics, Department of Physics, University of Wisconsin-Milwaukee , PO Box 413, Milwaukee, WI 53201 , USA

11. Institute for Radio Astronomy & Space Research, Auckland University of Technology , Private Bag 92006, Auckland 1142 , New Zealand

Abstract

ABSTRACT The HTRU-S Low Latitude survey data within 1° of the Galactic Centre (GC) were searched for pulsars using the Fast Folding Algorithm (FFA). Unlike traditional Fast Fourier Transform (FFT) pipelines, the FFA optimally folds the data for all possible periods over a given range, which is particularly advantageous for pulsars with low-duty cycles. For the first time, a search over acceleration was included in the FFA to improve its sensitivity to binary pulsars. The steps in dispersion measure (DM) and acceleration were optimized, resulting in a reduction of the number of trials by 86 per cent. This was achieved over a search period range from 0.6 to 432-s, i.e. 10 per cent of the observation time (4320s), with a maximum DM of 4000 pc cm−3 and an acceleration range of ±128 m s−2. The search resulted in the re-detections of four known pulsars, including a pulsar that was missed in the previous FFT processing of this survey. This result indicates that the FFA pipeline is more sensitive than the FFT pipeline used in the previous processing of the survey within our parameter range. Additionally, we discovered a 1.89-s pulsar, PSR J1746-2829, with a large DM, located 0.5 from the GC. Follow-up observations revealed that this pulsar has a relatively flat spectrum (α = −0.9 ± 0.1) and has a period derivative of ∼1.3 × 10−12 s s−1, implying a surface magnetic field of ∼5.2 × 1013 G and a characteristic age of ∼23 000 yr. While the period, spectral index, and surface magnetic field strength are similar to many radio magnetars, other characteristics such as high linear polarization are absent.

Funder

Australian Government

National Research Foundation

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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