The NA62 experiment reports an investigation of the K+ → π+νν¯ mode from a sample of K+ decays collected in 2017 at the CERN SPS. The experiment has achieved a single event sensitivity of (0.389 ± 0.024) × 10−10, corresponding to 2.2 events assuming the Standard Model branching ratio of (8.4 ± 1.0) × 10−11. Two signal candidates are observed with an expected background of 1.5 events. Combined with the result of a similar analysis conducted by NA62 on a smaller data set recorded in 2016, the collaboration now reports an upper limit of 1.78×10−10 for the K+ → π+νν¯ branching ratio at 90% CL. This, together with the corresponding 68% CL measurement of (0.48+0.72 −0.48)×10−10, are currently the most precise results worldwide, and are able to co...
The K+ -> pi(+) nu(nu) over bar decay, with a very precisely predicted branching ratio of less th...
The NA62 experiment reports the branching ratio measurement BR(K+ → π+ν(Equation presented)) at 68 %...
The K+ → π+νν decay is characterised by a very precise prediction in the Standard Model (SM). Its br...
International audienceThe NA62 experiment reports an investigation of the K+→π+νν¯ mode from a sampl...
The NA62 experiment reports an investigation of the K+→ π+νν¯ mode from a sample of K+ decays collec...
The decay K+ → π+ ν¯ν has one of the most precisely predicted branch- ing ratio at the level of 10−1...
The NA62 experiment reports the branching ratio measurement BR(K+ →π+νν¯) = (10.6+4.0−3.4|stat ± 0.9...
Abstract The NA62 experiment reports the branching ratio measurement BR K + → π + ν ν ¯ = 10.6 − 3.4...
The decay K+→π+ νν ̅, with a very precisely predicted branching ratio of less than 10-10, is among t...
The K+ → π+νν ̄ decay is characterised by a very precise prediction in the Standard Model (SM). Its ...
The decay K+ -> pi(+)nu(nu) over bar, with a very precisely predicted branching ratio of less tha...
The decay K+ → π+νν¯, with a very precisely predicted branching ratio of less than 10−10, is among t...
The K+ -> pi(+) nu(nu) over bar decay, with a very precisely predicted branching ratio of less th...
The NA62 experiment reports the branching ratio measurement BR(K+ → π+ν(Equation presented)) at 68 %...
The K+ → π+νν decay is characterised by a very precise prediction in the Standard Model (SM). Its br...
International audienceThe NA62 experiment reports an investigation of the K+→π+νν¯ mode from a sampl...
The NA62 experiment reports an investigation of the K+→ π+νν¯ mode from a sample of K+ decays collec...
The decay K+ → π+ ν¯ν has one of the most precisely predicted branch- ing ratio at the level of 10−1...
The NA62 experiment reports the branching ratio measurement BR(K+ →π+νν¯) = (10.6+4.0−3.4|stat ± 0.9...
Abstract The NA62 experiment reports the branching ratio measurement BR K + → π + ν ν ¯ = 10.6 − 3.4...
The decay K+→π+ νν ̅, with a very precisely predicted branching ratio of less than 10-10, is among t...
The K+ → π+νν ̄ decay is characterised by a very precise prediction in the Standard Model (SM). Its ...
The decay K+ -> pi(+)nu(nu) over bar, with a very precisely predicted branching ratio of less tha...
The decay K+ → π+νν¯, with a very precisely predicted branching ratio of less than 10−10, is among t...
The K+ -> pi(+) nu(nu) over bar decay, with a very precisely predicted branching ratio of less th...
The NA62 experiment reports the branching ratio measurement BR(K+ → π+ν(Equation presented)) at 68 %...
The K+ → π+νν decay is characterised by a very precise prediction in the Standard Model (SM). Its br...