A sample of fast radio bursts discovered and localized with MeerTRAP at the MeerKAT telescope

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 524:3 (2023) 4275-4295

Authors:

F Jankowski, MC Bezuidenhout, M Caleb, LN Driessen, M Malenta, V Morello, KM Rajwade, S Sanidas, BW Stappers, MP Surnis, ED Barr, W Chen, M Kramer, J Wu, S Buchner, M Serylak, J Xavier Prochaska

X-Ray and Near-Infrared Observations of the Middle-aged Pulsar B1055–52, Its Multiwavelength Spectrum, and Proper Motion*

The Astrophysical Journal American Astronomical Society 952:2 (2023) 134-134

Authors:

B Posselt, GG Pavlov, O Kargaltsev, J Hare

Abstract:

The diffusion coefficients around the pulsar $\gamma$-ray halos are highly suppressed compared with the value in the interstellar medium. It is suggested in the literature that the $\gamma$-ray halos can be explained by a ballistic-diffusive (BD) propagation without slow diffusion. However our calculation shows that the BD propagation can not account for the $\gamma$-ray halo profile well. Furthermore the transfer efficiency of the pulsar spin down energy to the high energy electrons and positrons is even larger than 1 in the BD scenario. Therefore slow diffusion is necessary to account for the pulsar $\gamma$-ray halos. Taking the slow diffusion into account the contribution of positron flux originated from nearby pulsars to the AMS-02 data is reexamined. We may also expect a slow diffusion disk of the Milky Way as many such slow diffusion regions exist. The positron contribution to the AMS-02 data from dark matter annihilation in the new propagation model is also reexamined. We find that the dark matter scenario satisfies all the $\gamma$-ray limits in the new propagation model.Comment: 10 pages, 8 figures. Proceedings of the 38th International Cosmic Ray Conference (ICRC2023) in Nagoya, Japa

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

A subarcsec localized fast radio burst with a significant host galaxy dispersion measure contribution

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 524:2 (2023) 2064-2077

Authors:

M Caleb, LN Driessen, AC Gordon, N Tejos, L Bernales, H Qiu, JO Chibueze, BW Stappers, KM Rajwade, F Cavallaro, Y Wang, P Kumar, WA Majid, RS Wharton, CJ Naudet, MC Bezuidenhout, F Jankowski, M Malenta, V Morello, S Sanidas, MP Surnis, ED Barr, W Chen, M Kramer, W Fong, CD Kilpatrick, J Xavier Prochaska, S Simha, C Venter, I Heywood, A Kundu, F Schussler

The bright end of the galaxy luminosity function at z ≃ 7 from the VISTA VIDEO survey

Monthly Notices of the Royal Astronomical Society Oxford University Press 524:3 (2023) 4586-4613

Authors:

Rg Varadaraj, Raa Bowler, Mj Jarvis, Nj Adams, B Haussler

Abstract:

We have conducted a search for z â‰ƒ 7 Lyman-break galaxies over 8.2 deg2 of near-infrared imaging from the Visible and Infrared Survey Telescope for Astronomy (VISTA) Deep Extragalactic Observations (VIDEO) survey in the XMM–Newton-Large Scale Structure (XMM-LSS) and the Extended Chandra Deep Field-South (ECDF-S) fields. Candidate galaxies were selected from a full photometric redshift analysis down to a Y + J depth of 25.3 (5σ), utilizing deep auxiliary optical and Spitzer/Infrared Array Camera (IRAC) data to remove brown dwarf and red interloper galaxy contaminants. Our final sample consists of 28 candidate galaxies at 6.5 ≤ z ≤ 7.5 with −23.5 ≤ MUV ≤ −21.6. We derive stellar masses of 9.1 ≤ log10(M⋆/M⊙) ≤ 10.9 for the sample, suggesting that these candidates represent some of the most massive galaxies known at this epoch. We measure the rest-frame ultraviolet (UV) luminosity function (LF) at z â‰ƒ 7, confirming previous findings of a gradual decline in number density at the bright end (MUV < −22) that is well described by a double power law (DPL). We show that quasar contamination in this magnitude range is expected to be minimal, in contrast to conclusions from recent pure-parallel Hubble studies. Our results are up to a factor of 10 lower than previous determinations from optical-only ground-based studies at MUV â‰² −23. We find that the inclusion of YJHKs photometry is vital for removing brown dwarf contaminants, and z â‰ƒ 7 samples based on red optical data alone could be highly contaminated (≳50 per cent). In comparison with other robust z > 5 samples, our results further support little evolution in the very bright end of the rest-frame UV LF from z = 5–10, potentially signalling a lack of mass quenching and/or dust obscuration in the most massive galaxies in the first Gyr.