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Showing 1–4 of 4 results
Advanced filters: Author: Tyler Volkoff Clear advanced filters
  • Gravitational-wave observatories explore nuclear matter properties under extreme conditions in neutron star mergers. Here, authors link the gravitational-wave signals from these mergers to the equation of state at the highest densities.

    • Christian Ecker
    • Tyler Gorda
    • Luciano Rezzolla
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-9
  • The Nuclear-physics and Multi-Messenger Astrophysics framework, NMMA, combines multiple information from neutron stars and neutron star mergers. Here, the authors show an update of the NMMA framework to constrain neutron star equation of state by simultaneously analyzing multi-messenger observations.

    • Peter T. H. Pang
    • Tim Dietrich
    • Chris Van Den Broeck
    ResearchOpen Access
    Nature Communications
    Volume: 14, P: 1-13
  • The cores of neutron stars could be made of hadronic matter or quark matter. By combining first-principles calculations with observational data, evidence for the presence of quark matter in neutron star cores is found.

    • Eemeli Annala
    • Tyler Gorda
    • Aleksi Vuorinen
    ResearchOpen Access
    Nature Physics
    Volume: 16, P: 907-910
  • Parametrised quantum circuits are a promising hybrid classical-quantum approach, but rigorous results on their effective capabilities are rare. Here, the authors explore the feasibility of training depending on the type of cost functions, showing that local ones are less prone to the barren plateau problem.

    • M. Cerezo
    • Akira Sone
    • Patrick J. Coles
    ResearchOpen Access
    Nature Communications
    Volume: 12, P: 1-12