7 research outputs found

    Nonmonotonic dependence of the absolute entropy on temperature in supercooled Stillinger-Weber silicon

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    Using a recently developed thermodynamic integration method, we compute the precise values of the excess Gibbs free energy (G^e) of the high density liquid (HDL) phase with respect to the crystalline phase at different temperatures (T) in the supercooled region of the Stillinger-Weber (SW) silicon [F. H. Stillinger and T. A. Weber, Phys. Rev. B. 32, 5262 (1985)]. Based on the slope of G^e with respect to T, we find that the absolute entropy of the HDL phase increases as its enthalpy changes from the equilibrium value at T \ge 1065 K to the value corresponding to a non-equilibrium state at 1060 K. We find that the volume distribution in the equilibrium HDL phases become progressively broader as the temperature is reduced to 1060 K, exhibiting van-der-Waals (VDW) loop in the pressure-volume curves. Our results provides insight into the thermodynamic cause of the transition from the HDL phase to the low density phases in SW silicon, observed in earlier studies near 1060 K at zero pressure.Comment: This version is accepted for publication in Journal of Statistical Physics (11 figures, 1 table

    First joint oscillation analysis of Super-Kamiokande atmospheric and T2K accelerator neutrino data

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    The Super-Kamiokande and T2K collaborations present a joint measurement of neutrino oscillation parameters from their atmospheric and beam neutrino data. It uses a common interaction model for events overlapping in neutrino energy and correlated detector systematic uncertainties between the two datasets, which are found to be compatible. Using 3244.4 days of atmospheric data and a beam exposure of 19.7(16.3)×102019.7(16.3) \times 10^{20} protons on target in (anti)neutrino mode, the analysis finds a 1.9σ\sigma exclusion of CP-conservation (defined as JCP=0J_{CP}=0) and a preference for the normal mass ordering

    First joint oscillation analysis of Super-Kamiokande atmospheric and T2K accelerator neutrino data

    No full text
    International audienceThe Super-Kamiokande and T2K collaborations present a joint measurement of neutrino oscillation parameters from their atmospheric and beam neutrino data. It uses a common interaction model for events overlapping in neutrino energy and correlated detector systematic uncertainties between the two datasets, which are found to be compatible. Using 3244.4 days of atmospheric data and a beam exposure of 19.7(16.3)×102019.7(16.3) \times 10^{20} protons on target in (anti)neutrino mode, the analysis finds a 1.9σ\sigma exclusion of CP-conservation (defined as JCP=0J_{CP}=0) and a preference for the normal mass ordering

    First joint oscillation analysis of Super-Kamiokande atmospheric and T2K accelerator neutrino data

    No full text
    International audienceThe Super-Kamiokande and T2K collaborations present a joint measurement of neutrino oscillation parameters from their atmospheric and beam neutrino data. It uses a common interaction model for events overlapping in neutrino energy and correlated detector systematic uncertainties between the two datasets, which are found to be compatible. Using 3244.4 days of atmospheric data and a beam exposure of 19.7(16.3)×102019.7(16.3) \times 10^{20} protons on target in (anti)neutrino mode, the analysis finds a 1.9σ\sigma exclusion of CP-conservation (defined as JCP=0J_{CP}=0) and a preference for the normal mass ordering
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