Eight new millisecond pulsars from the first MeerKAT globular cluster census

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 504:1 (2021) 1407-1426

Authors:

A Ridolfi, T Gautam, PCC Freire, SM Ransom, SJ Buchner, A Possenti, V Venkatraman Krishnan, M Bailes, M Kramer, BW Stappers, F Abbate, ED Barr, M Burgay, F Camilo, A Corongiu, A Jameson, PV Padmanabh, L Vleeschower, DJ Champion, W Chen, M Geyer, A Karastergiou, R Karuppusamy, A Parthasarathy, DJ Reardon, M Serylak, RM Shannon, R Spiewak

Strong low-frequency radio flaring from Cygnus X-3 observed with LOFAR

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 504:1 (2021) 1482-1494

Authors:

JW Broderick, TD Russell, RP Fender, SA Trushkin, DA Green, J Chauhan, NA Nizhelskij, PG Tsybulev, NN Bursov, AV Shevchenko, GG Pooley, DRA Williams, JS Bright, A Rowlinson, S Corbel

Particle acceleration in radio galaxies with flickering jets: GeV electrons to ultrahigh energy cosmic rays

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 503:4 (2021) 5948-5964

Authors:

James H Matthews, Andrew M Taylor

The Thousand-Pulsar-Array programme on MeerKAT - V. Scattering analysis of single-component pulsars

Monthly Notices of the Royal Astronomical Society Oxford University Press 504:1 (2021) 1115-1128

Authors:

Ls Oswald, A Karastergiou, B Posselt, S Johnston, M Bailes, S Buchner, M Geyer, Mj Keith, M Kramer, A Parthasarathy, Dj Reardon, M Serylak, Rm Shannon, R Spiewak, W van Straten, V Venkatraman Krishnan

Abstract:

We have measured the scattering time-scale, τ, and the scattering spectral index, α, for 84 single-component pulsars. Observations were carried out with the MeerKAT telescope as part of the Thousand-Pulsar-Array programme in the MeerTime project at frequencies between 0.895 and 1.670 GHz. Our results give a distribution of values for α (defined in terms of τ and frequency ν as τ ∝ ν−α) for which, upon fitting a Gaussian, we obtain a mean and standard deviation of 〈α〉 = 4.0 ± 0.6. This is due to our identification of possible causes of inaccurate measurement of τ, which, if not filtered out of modelling results, tend to lead to underestimation of α. The pulsars in our sample have large dispersion measures and are therefore likely to be distant. We find that a model using an isotropic scatter broadening function is consistent with the data, likely due to the averaging effect of multiple scattering screens along the line of sight. Our sample of scattering parameters provides a strong data set upon which we can build to test more complex and time-dependent scattering phenomena, such as extreme scattering events.

Optical spectroscopy of blazars for the Cherenkov Telescope Array

Astronomy & Astrophysics EDP Sciences 650 (2021) A106-A106

Authors:

P Goldoni, S Pita, C Boisson, W Max-Moerbeck, E Kasai, DA Williams, F D’Ammando, V Navarro-Aranguiz, M Backes, U Barres de Almeida, J Becerra-Gonzalez, G Cotter, O Hervet, J-P Lenain, E Lindfors, H Sol, S Wagner

Abstract:

Context. Blazars are the most numerous class of High Energy (HE; E about 50 MeV - few 100 GeV) and Very High Energy (VHE; E about 100 GeV - 10 TeV) gamma-ray emitters. As of today, a measured spectroscopic redshift is available for only about 50% of gamma-ray BL Lacs, mainly due to the difficulty of measuring reliable redshifts from their nearly featureless, continuum-dominated optical spectra. The knowledge of the redshift is fundamental for understanding the emission from blazars, for population studies and also for indirect studies of the extragalactic background light and searches for Lorentz invariance violation and axion-like particles using blazars. Aims. This paper is the first of a series of papers which aim to measure the redshift of a sample of blazars likely to be detected with the upcoming Cherenkov Telescope Array (CTA), a ground based gamma-ray observatory. Methods. Monte Carlo simulations were performed to select those hard spectrum gamma-ray blazars detected with the Fermi-LAT telescope still lacking redshift measurements but likely to be detected by CTA in 30 hours of observing time or less. Optical observing campaigns involving deep imaging and spectroscopic observations were organised to efficiently constrain their redshifts. We performed deep medium to high resolution spectroscopy of nineteen blazar optical counterparts using the ESI spectrograph at Keck, the RSS spectrograph at the SALT telescope, and the EFOSC2 spectrograph at the ESO NTT. We searched systematically for spectral features and, when possible, we estimated the contribution of the host galaxy to the total flux. Results. We measured eleven firm spectroscopic redshifts with values ranging from 0.1116 to 0.482. one tentative redshift, three redshift lower limits including one at z > 0.449 and another at z > 0.868. There were four objects found to have featureless spectra.Comment: Accepted by Astronomy & Astrophysic