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"The ORT and the uGMRT pulsar monitoring program: Pulsar timing irregularities & the Gaussian process realisation"

dc.contributor.authorGrover, Himanshu
dc.contributor.authorJoshi, Bhal Chandra
dc.contributor.authorSingha, Jaikhomba
dc.contributor.authorGügercino˘glu, Erbil
dc.contributor.authorArumugam, Paramasivan
dc.contributor.authorBandyopadhyay, Debades
dc.contributor.authorChibueze, James O
dc.contributor.authorDesai, Shantanu
dc.contributor.authorEya, Innocent O
dc.contributor.authorKundu, Anu
dc.contributor.authorUrama, Johnson O
dc.date.accessioned2025-11-18T08:39:51Z
dc.date.issued2024
dc.descriptionJournal Article. Centre for Space Research, North-West University, Potchefstroom
dc.description.abstractThe spin-down law of pulsars is generally perturbed by two types of timing irregularities: glitches and timing noise. Glitches are sudden changes in the rotational frequency of pulsars, while timing noise is a discernible stochastic wandering in the phase, period, or spin-down rate of a pulsar. We present the timing results of a sample of glitching pulsars observed using the Ooty Radio Telescope (ORT) and the upgraded Giant Metrewave Radio Telescope (uGMRT). Our findings include timing noise analysis for 17 pulsars, with seven being reported for the first time. We detected five glitches in four pulsars and a glitch-like event in PSR J1825-0935. The frequency evolution of glitches in pulsars, J0742-2822 and J1740-3015, is presented for the first time. Additionally, we report timing noise results for three glitching pulsars. The timing noise was analysed separately in the pre-glitch and post-glitch regions. We observed an increase in the red noise parameters in the post-glitch regions, where exponential recovery was considered in the noise analysis. Timing noise can introduce ambiguities in the correct evaluation of glitch observations. Hence, it is important to consider timing noise in glitch analysis. We propose an innovative glitch verification approach designed to discern between a glitch and strong timing noise. The novel glitch analysis technique is also demonstrated using the observed data.
dc.description.sponsorshipBCJ acknowledges the support from Raja Ramanna Chair fellowship of the Department of Atomic Energy, Government of India (RRC– Track I Grant 3/3401 Atomic Energy Research 00 004 Research and Development 27 02 31 1002//2/2023/RRC/R&D-II/13886). BCJ also acknowledges support from the Department of Atomic Energy Government of India, under project number12-R&D-TFR5.020700.JS acknowledges funding from the South African Research Chairs Initiative of the Depart of Science and Technology and the National Research Foundation of South Africa. EG is supported by the National Natural Science Foundation of China (NSFC) programme 11988101 under the foreign talents grant QN2023061004L. PA acknowledges the support from SERB-DST, Govt. of India, via project code CRG/2022/009359. JOC acknowledges financial support from the South African Department of Science and Innovation’s National Research Foundation under the ISARP RADIOMAP Joint Research Scheme (DSI-NRF Grant Number 150551).
dc.identifier.citationGrover, H et al. 2024. The ORT and the uGMRT pulsar monitoring program: Pulsar timing irregularities & the Gaussian process realisation. Publications of the Astronomical Society of Australia, 41, p.e102. https://doi.org/10.1017/pasa.2024.96
dc.identifier.urihttp://hdl.handle.net/10394/44107
dc.language.isoen
dc.publisherCambridge University Press
dc.subjectRadio astronomy
dc.subjectPulsars
dc.subjectGeneral
dc.subjectPulsar timing method
dc.subjectRadio telescopes
dc.subjectAstronomy data analysis
dc.title"The ORT and the uGMRT pulsar monitoring program: Pulsar timing irregularities & the Gaussian process realisation"
dc.typeArticle

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