The NA62 experiment at CERN collected the world's largest data set of charged kaon decays in 2016-2018, leading to the most precise measurement of the branching fraction of the ultra-rare K+→π+νν‾ decay, based on 20 candidates. This provides evidence for the observation of the K+→π+νν‾ decay with a significance of 3.4σ. This measurement is also used to set limits on B(K+→π+X), where X is a scalar or pseudo-scalar particle. The analysis of the full 2016-2018 data sample is reviewed. More recent results from NA62 analyses of K+→π0e+νγ, K+→π+μ+μ− and K+→π+γγ decays, using data samples recorded in 2017–2018, are also reported. The radiative kaon decay K+→π0e+νγ (Ke3γ) is studied with a data sample of O(100k) Ke3γ candidates with sub-percent bac...
The decay K+ → π+νν̄, with a very precisely predicted branching ratio of less than 10-10, is one of ...
The decay K+ → π+νν̄, with a very precisely predicted branching ratio of less than 10-10, is one of ...
The decay K+ → π+νν̄, with a very precisely predicted branching ratio of less than 10-10, is one of ...
The NA62 experiment at CERN collected the world's largest data set of charged kaon decays in 2016-20...
The ultra rare kaon decay K → πνν¯, being one of the theoretically cleanest meson decays, is very se...
The ultra rare kaon decay K → πνν¯, being one of the theoretically cleanest meson decays, is very se...
The ultra rare kaon decay K → πνν¯, being one of the theoretically cleanest meson decays, is very se...
The ultra rare kaon decay K → πνν¯, being one of the theoretically cleanest meson decays, is very se...
The NA62 experiment at CERN reports new results from studies of radiative kaon decays K+ → π0e+νγ (K...
The ultra rare kaon decay K → πνν¯, being one of the theoretically cleanest meson decays, is very se...
The main physics goal of the NA62 experiment at CERN is to precisely measure the branching ratio of ...
The main physics goal of the NA62 experiment at CERN is to precisely measure the branching ratio of ...
The main physics goal of the NA62 experiment at CERN is to precisely measure the branching ratio of ...
The main physics goal of the NA62 experiment at CERN is to precisely measure the branching ratio of ...
The main physics goal of the NA62 experiment at CERN is to precisely measure the branching ratio of ...
The decay K+ → π+νν̄, with a very precisely predicted branching ratio of less than 10-10, is one of ...
The decay K+ → π+νν̄, with a very precisely predicted branching ratio of less than 10-10, is one of ...
The decay K+ → π+νν̄, with a very precisely predicted branching ratio of less than 10-10, is one of ...
The NA62 experiment at CERN collected the world's largest data set of charged kaon decays in 2016-20...
The ultra rare kaon decay K → πνν¯, being one of the theoretically cleanest meson decays, is very se...
The ultra rare kaon decay K → πνν¯, being one of the theoretically cleanest meson decays, is very se...
The ultra rare kaon decay K → πνν¯, being one of the theoretically cleanest meson decays, is very se...
The ultra rare kaon decay K → πνν¯, being one of the theoretically cleanest meson decays, is very se...
The NA62 experiment at CERN reports new results from studies of radiative kaon decays K+ → π0e+νγ (K...
The ultra rare kaon decay K → πνν¯, being one of the theoretically cleanest meson decays, is very se...
The main physics goal of the NA62 experiment at CERN is to precisely measure the branching ratio of ...
The main physics goal of the NA62 experiment at CERN is to precisely measure the branching ratio of ...
The main physics goal of the NA62 experiment at CERN is to precisely measure the branching ratio of ...
The main physics goal of the NA62 experiment at CERN is to precisely measure the branching ratio of ...
The main physics goal of the NA62 experiment at CERN is to precisely measure the branching ratio of ...
The decay K+ → π+νν̄, with a very precisely predicted branching ratio of less than 10-10, is one of ...
The decay K+ → π+νν̄, with a very precisely predicted branching ratio of less than 10-10, is one of ...
The decay K+ → π+νν̄, with a very precisely predicted branching ratio of less than 10-10, is one of ...