30 research outputs found

    New high statistics measurement of Ke4K_{e4} decay form factors and ππ\pi\pi scattering phase shifts

    Get PDF
    We report results from a new measurement of the Ke4K_{e4} decay K±→π+π−e±νK^{\pm} \rightarrow \pi^{+}\pi^{-}e^{\pm}\nu by the NA48/2 collaboration at the CERN SPS, based on a partial sample of more than 670000 Ke4K_{e4} decays in both charged modes collected in 2003. The form factors of the hadronic current (F, G, H) and ππ\pi\pi phase difference (δ=δs−δp\delta=\delta_{s}-\delta_{p}) have been measured in ten independent bins of the ππ\pi\pi mass spectrum to investigate the variation. A sizeable acceptance at large ππ\pi\pi mass, a low background and a very good resolution contribute to an improved experimental accuracy, a factor two better than in the previous measurement, when extracting the ππ\pi\pi scattering lengths a00a^{0}_{0} and a02a^{2}_{0}. Under the assumption of isospin symmetry and using numerical solutions of the Roy equations, the following values are obtained in the plane (a00,a02):a00=0.233±0.016stat±0.007syst,a02=−0.0471±0.011stat±0.004systa^{0}_{0}, a^{2}_{0}): a^{0}_{0}=0.233 \pm 0.016_{stat} \pm 0.007_{syst}, a^{2}_{0}=-0.0471 \pm 0.011_{stat} \pm 0.004_{syst}. The presence of potentially large isospin effects is also considered and will allow comparison with precise predictions from Chiral Perturbation Theory

    Search for direct CP violating charge asymmetries in K±→π±π+π−K^\pm\to\pi^\pm\pi^+\pi^- and K±→π±π0π0K^\pm\to\pi^\pm\pi^0\pi^0 decays

    Full text link
    A measurement of the direct CP violating charge asymmetries of the Dalitz plot linear slopes Ag=(g+−g−)/(g++g−)A_g=(g^+-g^-)/(g^++g^-) in K±→π±π+π−K^\pm\to\pi^\pm\pi^+\pi^- and K±→π±π0π0K^\pm\to\pi^\pm\pi^0\pi^0 decays by the NA48/2 experiment at CERN SPS is presented. A new technique of asymmetry measurement involving simultaneous K+K^+ and K−K^- beams and a large data sample collected allowed a result of an unprecedented precision. The charge asymmetries were measured to be Agc=(−1.5±2.2)×10−4A^c_g=(-1.5\pm2.2)\times10^{-4} with 3.11×1093.11\times 10^9 K±→π±π+π−K^{\pm}\to\pi^\pm\pi^+\pi^- decays, and Agn=(1.8±1.8)×10−4A^n_g=(1.8\pm1.8)\times10^{-4} with 9.13×1079.13\times 10^7 K±→π±π0π0K^{\pm}\to\pi^\pm\pi^0\pi^0 decays. The precision of the results is limited mainly by the size of the data sample.Comment: 29 pages, 9 figures. An updated version accepted by the EPJ

    Review of Kaon Physics at CERN and in Europe

    Get PDF
    The Kaon physics program at CERN and in Europe will be presented. I will first give a short review of recent results form the NA48/2 and NA62 experiments, with special emphasis to the measurement of RK , the ratio of Kaon leptonic decays rates, K → eν and K → μν, using the full minimum bias data sample collected in 2007-2008. The main subject of the talk will be the study of the highly suppressed decay K → πνν. While its rate can be predicted with minimal theoretical uncertainty in the Standard Model (BR ∼ 8 × 10−11), the smallness of BR and the challenging experimental signature make it very difficult to measure. The branching ratio for this decay is thus a sensitive probe of the flavour sector of the SM. The aim of NA62 is the measurement of the K → πνν BR with ∼ 10% precision in two years of data taking. This will require the observation of 10K decays in the experiment's fiducial volume, as well as the use of high-performance systems for precision tracking, particle identification, and photon vetoing. These aspects of the experiment will also allow NA62 to carry out a rich program of searches for lepton flavour and/or number violating K decays. Data taking will start in October 2014. The physics prospects and the status of the construction and commissioning of the NA62 experiment will be presented. In the last part of the talk I will report on Kaon physics results and prospects from other experiments at CERN (e.g. LHCb) and in Europe (e.g. KLOE and KLOE-2) and briefly mention the status in US

    Long term effect of cadmium or copper on Asellus aquaticus

    No full text
    corecore