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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.

Jirina Stone

Visitor

Sub department

  • Astrophysics
jirina.stone@physics.ox.ac.uk
Telephone: 01865 (2)73306
Denys Wilkinson Building, room 704
  • About
  • Publications

Coulomb and symmetry-energy effects on proton and neutron density-distributions in central heavy-ion collisions, across beam energies and system masses

EPJ Web of Conferences EDP Sciences 306 (2024) 01031

Authors:

Jirina R Stone, Pawel Danielewicz, Yoritaka Iwata
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A Powerful New Energy Density Functional

Journal of Physics Conference Series IOP Publishing 2586:1 (2023) 012055-012055

Authors:

AW Thomas, PAM Guichon, J Leong, KL Martinez-Paglinawan, JR Stone

Abstract:

International audienceWe describe the most recent energy density functional derived within the quark meson coupling model. Although fit to the binding energies and charge radii of just seventy magic nuclei, the accuracy with which it reproduces nuclear properties across the entire periodic table is outstanding. As well as outlining a number of those results, we present an argument explaining why having a physically motivated model with a small number of parameters is especially desirable as one seeks to make predictions in new regions of N and Z. As an example we show the predictions for known super-heavy nuclei that were not included in the fit
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Nuclear Symmetry Energy and Hyperonic Stars in the QMC Model

Frontiers in Astronomy and Space Sciences Frontiers 9 (2022) 903007

Authors:

Jirina R Stone, Pierre AM Guichon, Anthony W Thomas
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Coulomb effects in low- and medium-energy heavy-ion collisions

Physics Letters B Elsevier 826 (2022) 136915

Authors:

JR Stone, P Danielewicz, Y Iwata
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Glassy quantum nuclear pasta in neutron star crusts

Physical Review C American Physical Society (APS) 105:2 (2022) 025806

Authors:

William G Newton, Sarah Cantu, Shuxi Wang, Amber Stinson, Mark Alexander Kaltenborn, Jirina Rikovska Stone
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