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Black Hole

Lensing of space time around a black hole. At Oxford we study black holes observationally and theoretically on all size and time scales - it is some of our core work.

Credit: ALAIN RIAZUELO, IAP/UPMC/CNRS. CLICK HERE TO VIEW MORE IMAGES.

Professor Stephen Smartt CBE FRS MRIA

Professor of Astrophysics

Research theme

  • Astronomy and astrophysics

Sub department

  • Astrophysics

Research groups

  • Hintze Centre for Astrophysical Surveys
  • Pulsars, transients and relativistic astrophysics
  • Rubin-LSST
stephen.smartt@physics.ox.ac.uk
Telephone: 01865273405
Denys Wilkinson Building, room 714
  • About
  • Publications

Unprecedented early flux excess in the hybrid 02es-like type Ia supernova 2022ywc indicates interaction with circumstellar material

(2023)

Authors:

Shubham Srivastav, T Moore, M Nicholl, MR Magee, SJ Smartt, MD Fulton, SA Sim, JM Pollin, L Galbany, C Inserra, A Kozyreva, Takashi J Moriya, FP Callan, X Sheng, KW Smith, JS Sommer, JP Anderson, M Deckers, M Gromadzki, TE Müller-Bravo, G Pignata, A Rest, DR Young

SN 2023ixf in Messier 101: A Variable Red Supergiant as the Progenitor Candidate to a Type II Supernova

The Astrophysical Journal Letters American Astronomical Society 952:1 (2023) L23-L23

Authors:

Charles D Kilpatrick, Ryan J Foley, Wynn V Jacobson-Galán, Anthony L Piro, Stephen J Smartt, Maria R Drout, Alexander Gagliano, Christa Gall, Jens Hjorth, David O Jones, Kaisey S Mandel, Raffaella Margutti, Enrico Ramirez-Ruiz, Conor L Ransome, V Ashley Villar, David A Coulter, Hua Gao, David Jacob Matthews, Kirsty Taggart, Yossef Zenati

Abstract:

It has been proposed that core-collapse supernovae (CCSNe) can take place along with the generation of a jet that fails to emerge from the stellar envelope of the progenitor star, i.e., a choked jet. Although the fraction of CCSNe that harbour such jets is unknown, it remains as an interesting possibility that can give rise to the production of high-energy neutrinos. In this work, we focus on the particular case of the recent type II supernova, SN 2023ixf, the closest of its class in the last decade. We describe the particle distributions of protons, pions, and muons in a putative jet applying a simple model to account for the relevant interactions, which are synchrotron cooling and interactions with the soft photon field in the ambient. After evaluating the produced fluence for different values of the viewing angle $i_{\rm j}$ with respect to the jet axis, and comparing with the upper bound by IceCube, we conclude that the generation of a choked jet in SN 2023ixf can not be ruled out. Specifically, for typical jet Lorentz factors of the jet $Γ=100$, the jet could have been produced with an half-opening angle $θ_{\rm op}=0.2\,{\rm rad}$ but for a viewing angle $i_{\rm j}\gtrsim θ_{\rm op}$, no significant Doppler boosting would take place along this direction. Therefore, the choked jet scenario in SN 2023ixf still remains compatible with observations provided our line of sight corresponds to an off-axis view of the jet.16 pages, 7 figures. Matches published versio

A Precursor Plateau and Pre-Maximum [O II] Emission in the Superluminous SN2019szu: A Pulsational Pair-Instability Candidate

(2023)

Authors:

Aysha Aamer, Matt Nicholl, Anders Jerkstrand, Sebastian Gomez, Samantha R Oates, Stephen J Smartt, Shubham Srivastav, Giorgos Leloudas, Joseph P Anderson, Edo Berger, Thomas de Boer, Kenneth Chambers, Ting-Wan Chen, Lluís Galbany, Hua Gao, Benjamin P Gompertz, Maider González-Bañuelos, Mariusz Gromadzki, Claudia P Gutiérrez, Cosimo Inserra, Thomas B Lowe, Eugene A Magnier, Paolo A Mazzali, Thomas Moore, Tomás E Müller-Bravo, Miika Pursiainen, Armin Rest, Steve Schulze, Ken W Smith, Jacco H Terwel, Richard Wainscoat, David R Young

AT2022aedm and a new class of luminous, fast-cooling transients in elliptical galaxies

(2023)

Authors:

M Nicholl, S Srivastav, MD Fulton, S Gomez, ME Huber, SR Oates, P Ramsden, L Rhodes, SJ Smartt, KW Smith, A Aamer, JP Anderson, FE Bauer, E Berger, T de Boer, KC Chambers, P Charalampopoulos, T-W Chen, RP Fender, M Fraser, H Gao, DA Green, L Galbany, BP Gompertz, M Gromadzki, CP Gutiérrez, DA Howell, C Inserra, PG Jonker, M Kopsacheili, TB Lowe, EA Magnier, C McCully, SL McGee, T Moore, TE Müller-Bravo, M Newsome, E Padilla Gonzalez, C Pellegrino, T Pessi, M Pursiainen, A Rest, EJ Ridley, BJ Shappee, X Sheng, GP Smith, G Terreran, MA Tucker, J Vinkó, RJ Wainscoat, P Wiseman, DR Young

JWST detection of heavy neutron capture elements in a compact object merger

(2023)

Authors:

A Levan, BP Gompertz, OS Salafia, M Bulla, E Burns, K Hotokezaka, L Izzo, GP Lamb, DB Malesani, SR Oates, ME Ravasio, A Rouco Escorial, B Schneider, N Sarin, S Schulze, NR Tanvir, K Ackley, G Anderson, GB Brammer, L Christensen, VS Dhillon, PA Evans, M Fausnaugh, W-F Fong, AS Fruchter, C Fryer, JPU Fynbo, N Gaspari, KE Heintz, J Hjorth, JA Kennea, MR Kennedy, T Laskar, G Leloudas, I Mandel, A Martin-Carrillo, BD Metzger, M Nicholl, A Nugent, JT Palmerio, G Pugliese, J Rastinejad, L Rhodes, A Rossi, SJ Smartt, HF Stevance, A Tohuvavohu, A van der Horst, SD Vergani, D Watson, T Barclay, K Bhirombhakdi, E Breedt, AA Breeveld, AJ Brown, S Campana, AA Chrimes, P D'Avanzo, V D'Elia, M De Pasquale, MJ Dyer, DK Galloway, JA Garbutt, MJ Green, DH Hartmann, P Jakobsson, P Kerry, D Langeroodi, JK Leung, SP Littlefair, J Munday, P O'Brien, SG Parsons, I Pelisoli, A Saccardi, DI Sahman, R Salvaterra, B Sbarufatti, D Steeghs, G Tagliaferri, CC Thöne, A de Ugarte Postigo, DA Kann

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