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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.

Dr Shubham Srivastav

Postdoctoral Research Assistant

Research theme

  • Astronomy and astrophysics

Sub department

  • Astrophysics

Research groups

  • Hintze Centre for Astrophysical Surveys
shubham.srivastav@physics.ox.ac.uk
Denys Wilkinson Building, room Tower
  • About
  • Publications

Panning for gold, but finding helium: discovery of the ultra-stripped supernova SN2019wxt from gravitational-wave follow-up observations

(2022)

Authors:

I Agudo, L Amati, T An, FE Bauer, S Benetti, MG Bernardini, R Beswick, K Bhirombhakdi, T de Boer, M Branchesi, SJ Brennan, MD Caballero-García, E Cappellaro, N Castro Rodríguez, AJ Castro-Tirado, KC Chambers, E Chassande-Mottin, S Chaty, T-W Chen, A Coleiro, S Covino, F D'Ammando, P D'Avanzo, V D'Elia, A Fiore, A Flörs, M Fraser, S Frey, C Frohmaier, L Galbany, C Gall, H Gao, J García-Rojas, G Ghirlanda, S Giarratana, JH Gillanders, M Giroletti, BP Gompertz, M Gromadzki, KE Heintz, Y-D Hu, ME Huber, A Inkenhaag, L Izzo, ZP Jin, PG Jonker, DA Kann, EC Kool, R Kotak, G Leloudas, AJ Levan, C-C Lin, JD Lyman, EA Magnier, K Maguire, I Mandel, B Marcote, D Mata Sánchez, S Mattila, A Melandri, MJ Michałowski, J Moldon, M Nicholl, A Nicuesa Guelbenzu, SR Oates, F Onori, M Orienti, R Paladino, Z Paragi, M Perez-Torres, E Pian, G Pignata, S Piranomonte, J Quirola-Vásquez, F Ragosta, A Rau, S Ronchini, A Rossi, R Sánchez-Ramírez, OS Salafia, S Schulze, SJ Smartt, KW Smith, J Sollerman, S Srivastav, RLC Starling, D Steeghs, HF Stevance, V Testa, MAP Torres, SD Vergani, D Vescovi, R Wainscost, D Watson, K Wiersema, Ł Wyrzykowski, J Yang, S Yang, DR Young
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Details from ArXiV

Panchromatic evolution of three luminous red novae: Forbidden hugs in pandemic times -- IV

(2022)

Authors:

A Pastorello, G Valerin, M Fraser, A Reguitti, N Elias-Rosa, AV Filippenko, C Rojas-Bravo, L Tartaglia, TM Reynolds, S Valenti, JE Andrews, C Ashall, KA Bostroem, TG Brink, J Burke, Y-Z Cai, E Cappellaro, DA Coulter, R Dastidar, KW Davis, G Dimitriadis, A Fiore, RJ Foley, D Fugazza, L Galbany, A Gangopadhyay, S Geier, CP Gutierrez, J Haislip, D Hiramatsu, S Holmbo, DA Howell, EY Hsiao, T Hung, SW Jha, E Kankare, E Karamehmetoglu, CD Kilpatrick, R Kotak, V Kouprianov, T Kravtsov, S Kumar, Z-T Li, MJ Lundquist, P Lundqvist, K Matilainen, PA Mazzali, C McCully, K Misra, A Morales-Garoffolo, S Moran, N Morrell, M Newsome, E Padilla Gonzalez, Y-C Pan, C Pellegrino, MM Phillips, G Pignata, AL Piro, DE Reichart, A Rest, I Salmaso, DJ Sand, MR Siebert, SJ Smartt, KW Smith, S Srivastav, MD Stritzinger, K Taggart, S Tinyanont, S-Y Yan, L Wang, X-F Wang, SC Williams, S Wyatt, T-M Zhang, T de Boer, K Chambers, H Gao, E Magnier
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SN 2016dsg: A Thermonuclear Explosion Involving a Thick Helium Shell

The Astrophysical Journal American Astronomical Society 934:2 (2022) 102-102

Authors:

Yize Dong, Stefano Valenti, Abigail Polin, Aoife Boyle, Andreas Flörs, Christian Vogl, Wolfgang E Kerzendorf, David J Sand, Saurabh W Jha, Łukasz Wyrzykowski, K Azalee Bostroem, Jeniveve Pearson, Curtis McCully, Jennifer E Andrews, Stefano Benetti, Stéphane Blondin, L Galbany, Mariusz Gromadzki, Griffin Hosseinzadeh, D Andrew Howell, Cosimo Inserra, Jacob E Jencson, Michael Lundquist, JD Lyman, Mark Magee, Kate Maguire, Nicolas Meza, Shubham Srivastav, Stefan Taubenberger, JH Terwel, Samuel Wyatt, DR Young

Abstract:

Abstract A thermonuclear explosion triggered by a He-shell detonation on a carbon–oxygen white-dwarf core has been predicted to have strong UV line blanketing at early times due to the iron-group elements produced during He-shell burning. We present the photometric and spectroscopic observations of SN 2016dsg, a subluminous peculiar Type I supernova consistent with a thermonuclear explosion involving a thick He shell. With a redshift of 0.04, the i -band peak absolute magnitude is derived to be around −17.5. The object is located far away from its host, an early-type galaxy, suggesting it originated from an old stellar population. The spectra collected after the peak are unusually red, show strong UV line blanketing and weak O i λ 7773 absorption lines, and do not evolve significantly over 30 days. An absorption line around 9700–10500 Å is detected in the near-infrared spectrum and is likely from the unburnt He in the ejecta. The spectroscopic evolution is consistent with the thermonuclear explosion models for a sub-Chandrasekhar-mass white dwarf with a thick He shell, while the photometric evolution is not well described by existing models.
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Details from ORA
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SN 2020kyg and the rates of faint Iax supernovae from ATLAS

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 511:2 (2022) 2708-2731

Authors:

Shubham Srivastav, SJ Smartt, ME Huber, KC Chambers, CR Angus, T-W Chen, FP Callan, JH Gillanders, OR McBrien, SA Sim, M Fulton, J Hjorth, KW Smith, DR Young, K Auchettl, JP Anderson, G Pignata, TJL de Boer, C-C Lin, EA Magnier
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SN 2020kyg and the rates of faint Iax Supernovae from ATLAS

(2021)

Authors:

Shubham Srivastav, SJ Smartt, ME Huber, KC Chambers, CR Angus, T-W Chen, FP Callan, JH Gillanders, OR McBrien, SA Sim, M Fulton, J Hjorth, KW Smith, DR Young, K Auchettl, JP Anderson, G Pignata, TJL de Boer, C-C Lin, EA Magnier
More details from the publisher
Details from ArXiV

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