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Aris Karastergiou

Professor of Astrophysics and Fellow at St Edmund Hall

Research theme

  • Astronomy and astrophysics

Sub department

  • Astrophysics

Research groups

  • MeerKAT
  • Pulsars, transients and relativistic astrophysics
  • The Square Kilometre Array (SKA)
  • Gamma-ray astronomy
Aris.Karastergiou@physics.ox.ac.uk
Telephone: 01865 (2)73642
Denys Wilkinson Building, room 603C
  • About
  • Publications

Rotational and radio emission properties of PSR J0738-4042 over half a century

(2023)

Authors:

ME Lower, S Johnston, A Karastergiou, PR Brook, M Bailes, S Buchner, AT Deller, L Dunn, C Flynn, M Kerr, RN Manchester, A Mandlik, LS Oswald, A Parthasarathy, RM Shannon, C Sobey, P Weltevrede
More details from the publisher
Details from ArXiV

Mass measurements and 3D orbital geometry of PSR J1933–6211

Astronomy & Astrophysics EDP Sciences 674 (2023) a169

Authors:

M Geyer, V Venkatraman Krishnan, PCC Freire, M Kramer, J Antoniadis, M Bailes, MCI Bernadich, S Buchner, AD Cameron, DJ Champion, A Karastergiou, MJ Keith, ME Lower, S Osłowski, A Possenti, A Parthasarathy, DJ Reardon, M Serylak, RM Shannon, R Spiewak, W van Straten, JPW Verbiest
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Mass measurements and 3D orbital geometry of PSR J1933$-$6211

(2023)

Authors:

M Geyer, V Venkatraman Krishnan, PCC Freire, M Kramer, J Antoniadis, M Bailes, MCI Bernadich, S Buchner, AD Cameron, DJ Champion, A Karastergiou, MJ Keith, ME Lower, S Osłowski, A Possenti, A Parthasarathy, DJ Reardon, M Serylak, RM Shannon, R Spiewak, W van Straten, JPW Verbiest
More details from the publisher
Details from ArXiV

PSR J1910–5959A: A rare gravitational laboratory for testing white dwarf models

Astronomy & Astrophysics EDP Sciences 671 (2023) a72

Authors:

A Corongiu, V Venkatraman Krishnan, PCC Freire, M Kramer, A Possenti, M Geyer, A Ridolfi, F Abbate, M Bailes, ED Barr, V Balakrishnan, S Buchner, DJ Champion, W Chen, BV Hugo, A Karastergiou, AG Lyne, RN Manchester, PV Padmanabh, A Parthasarathy, SM Ransom, JM Sarkissian, M Serylak, W van Straten
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The thousand-pulsar-array programme on MeerKAT XI: application of the rotating vector model

Monthly Notices of the Royal Astronomical Society Oxford University Press 520:4 (2023) 4801-4814

Authors:

S Johnston, M Krame, Aris Karastergiou, Mj Keith, Lucy Oswald, A Parthasarathy, P Weltevrede

Abstract:

In spite of the rich phenomenology of the polarization properties of radio pulsars, the rotating vector model (RVM) created 50 years ago remains the best method to determine the beam geometry of a pulsar. We apply the RVM to a sample of 854 radio pulsars observed with the MeerKAT telescope in order to draw conclusions about the population of pulsars as a whole. The main results are that (i) the geometrical interpretation of the position angle traverse is valid in the majority of the population, (ii) the pulsars for which the RVM fails tend to have a high fraction of circular polarization compared to linear polarization, (iii) emission heights obtained through both geometrical and relativistic methods show that the majority of pulsars must have emission heights less than 1000 km independent of spin period, (iv) orthogonal mode jumps are seen in the position angle traverse in about one third of the population. All these results are weakly dependent on the pulsar spin-down energy.
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