27 June 2022 to 1 July 2022
Prague, Czech Republic
Europe/Zurich timezone

Session

3; Wed-III

29 Jun 2022, 14:30
Prague, Czech Republic

Prague, Czech Republic

Prague, Czech Republic

Conveners

3; Wed-III

  • Benjamin Donigus (Johann-Wolfgang-Goethe Univ. (DE))

Presentation materials

There are no materials yet.

  1. Dimitar Lubomirov Mihaylov (Technische Universitaet Muenchen (DE))
    29/06/2022, 14:30
    talk

    The study of the strong interaction among hadrons is an essential question in nuclear physics. It has implications both for fundamental theories, such as QCD, as well as for the understanding of the structure of dense stellar objects, such as neutron stars.

    Traditionally, the experimental access to the properties of the strong force is primarily realized by scattering and hypernuclei...

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  2. Hanna Zbroszczyk (Warsaw University of Technology (PL))
    29/06/2022, 14:55
    talk

    Geometry and dynamics of the particle-emitting source in heavy-ion collisions can be inferred via the femtoscopy method. Two-particle correlations at small relative momentum exploit Quantum Statistics (QS) and the Final State Interactions (FSI), which allow one to study the space-time characteristics of the source of the order of $10^{−15}$ m and $10^{−23}$ s. Femtoscopic measurements allow...

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  3. Rafał Lalik (UJ Kraków )
    29/06/2022, 15:20
    talk

    HADES is a versatile spectrometer for studying various aspects of low energy QCD operating at the SIS18 synchrotron located at the GSI/FAIR in Darmstadt,
    Germany. Primarily designed to study dilepton production in proton and heavy ion induced collisions with its capability to identify also hadrons become an excellent tool to explore strange hadrons production. Λ, Σ, Ξ(1321), Λ(1405), Λ(1520),...

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  4. Mr Bhawani Singh (Technische Universitaet Muenchen (DE))
    29/06/2022, 15:45
    talk

    In the journey to explore the strong interaction among hadrons, ALICE has for the first time flared out its femtoscopic studies to nuclei. The large data sample of high-multiplicity pp collisions at $\sqrt{s} = 13$ TeV allows the  measurement of the proton-deuteron (p-d), kaon-deuteron ($\mathrm{K^{\pm}}$-d) and the Lambda-deuteron ($\Lambda$-d) momentum correlations. The femtoscopic study of...

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  5. Diana Pawłowska (Warsaw University of Technology)
    29/06/2022, 16:00
    talk

    Relativistic heavy-ion collisions can study properties of nuclear matter in high-energy experiments like the STAR experiment. One of the methods to learn about bulk matter is the femtoscopy technique, which relies on information carried by the particles produced during the collisions. The emission source parameters, like space-time characteristics, are provided using femtoscopic quantities....

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