323 research outputs found

    PRESTO: PREcursor of the Second sTatiOn of the CBM-MVD

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    Preparing the HADES tracking system for high-rate experiments at SIS100

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    Production of p, d and t in Ar+KCl at 1.76 AGeV

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    The CBM-MVD: progress in mechanical integration

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    Online data processing with the CBM-MVD prototype

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    Mechanical Integration of the CBM MVD Prototype

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    An ultra-low material budget Cu-based flexible cable for the CBM-MVD

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    Radiation Tolerance of CMOS Monolithic Active Pixel Sensors with Self-Biased Pixels

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    CMOS Monolithic Active Pixel Sensors (MAPS) are proposed as a technology for various vertex detectors in nuclear and particle physics. We discuss the mechanisms of ionizing radiation damage on MAPS hosting the the dead time free, so-called self bias pixel. Moreover, we discuss radiation hardened sensor designs which allow operating detectors after exposing them to irradiation doses above 1 Mra

    Temperature and thermodynamic instabilities in heavy ion collisions

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    We investigate thermodynamic properties and instability conditions in intermediate energy heavy ion reactions. We define locally thermodynamic variables, i.e. density, pressure and temperature, directly from the phase space distribution of a relativistic transport calculation. In particular, temperatures are determined by a fit to two covariant hot Fermi distributions thus taking into account possible anisotropic momentum configurations. We define instability independent from the nuclear matter spinodal by the criterion that the effective compressibility becomes negative. The method is applied to a semi-central Au on Au reaction at 600 MeV/nucleon. We investigate in particular the center of the participant and the spectator matter. In the latter we find a clear indication of instability with conditions of density and temperature that are consistent with experimental determinations.Comment: 20 pages latex, 5 PS-figures, revised version (minor changes) accepted for publication in Nucl. Phys.
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