The decay K+→π+ νν ̅, with a very precisely predicted branching ratio of less than 10-10, is among the best processes to reveal indirect effects of new physics. The NA62 experiment at CERN SPS is designed to study the K+→π+ νν ̅ decay and to measure its branching ratio using a decay-in-flight technique. NA62 took data in 2016, 2017 and 2018, reaching the sensitivity of the Standard Model for the K+→π+ νν ̅ decay by the analysis of the 2016 and 2017 data, and providing the most precise measurement of the branching ratio to date by the analysis of the 2018 data. This measurement is also used to set limits on BR(K+→π+X), where X is a scalar or pseudo-scalar particle. The final result of the K+→π+ νν ̅ branching ratio measurement an...
International audienceThe NA62 experiment reports an investigation of the K+→π+νν¯ mode from a sampl...
The NA62 experiment reports the branching ratio measurement BR(K+→π+νν¯)=(10.6−3.4+4.0|stat±0.9syst)...
The NA62 experiment at CERN Super Proton Synchrotron (SPS) is currently taking data to measure the u...
The decay K+ -> pi(+)nu(nu) over bar, with a very precisely predicted branching ratio of less tha...
The decay K+ → π+ ν¯ν has one of the most precisely predicted branch- ing ratio at the level of 10−1...
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 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 K+ -> pi(+) nu(nu) over bar decay, with a very precisely predicted branching ratio of less th...
The NA62 experiment reports an investigation of the K+ → π+νν¯ mode from a sample of K+ decays colle...
The decay K+ → π+νν with a very precisely predicted branching ratio of less than 10−10 is one of the...
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 the branching ratio measurement BR(K+→π+νν¯)=(10.6−3.4+4.0|stat±0.9syst)...
The NA62 experiment at CERN Super Proton Synchrotron (SPS) is currently taking data to measure the u...
The decay K+ -> pi(+)nu(nu) over bar, with a very precisely predicted branching ratio of less tha...
The decay K+ → π+ ν¯ν has one of the most precisely predicted branch- ing ratio at the level of 10−1...
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 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 K+ -> pi(+) nu(nu) over bar decay, with a very precisely predicted branching ratio of less th...
The NA62 experiment reports an investigation of the K+ → π+νν¯ mode from a sample of K+ decays colle...
The decay K+ → π+νν with a very precisely predicted branching ratio of less than 10−10 is one of the...
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 the branching ratio measurement BR(K+→π+νν¯)=(10.6−3.4+4.0|stat±0.9syst)...
The NA62 experiment at CERN Super Proton Synchrotron (SPS) is currently taking data to measure the u...