Within the framework of an extensive programme devoted to the search for alternative candidates for the neutrino mass determination, the atomic mass difference between 202Pb and 202Tl has been measured with the Penning trap mass spectrometer ISOLTRAP at the ISOLDE facility at CERN. The obtained value $ Q_{{\rm EC}} = 38.8(43)$ keV is three times more precise than the AME2012 value. While it will probably not lead to a replacement of 163Ho in modern experiments on the determination of the electron-neutrino mass, the electron capture in 202Pb would however allow a determination of the electron-neutrino mass on the few-eV level using a cryogenic micro-calorimeter
The atomic mass difference of 163Ho and 163Dy has been directly measured with the Penning-trap mass ...
Three decades ago, the measurement of the electron neutrino mass in atomic electron capture (EC) exp...
We report the first direct determination of the ground-state to ground-state electron-capture Q valu...
Within the framework of an extensive programme devoted to the search for alternative candidates for ...
International audienceWithin the framework of an extensive programme devoted to the search for alter...
Within the framework of an extensive programme devoted to the search for alternative candidates for ...
AbstractThe study of nuclear electron capture (EC) offers an exciting alternative for the determinat...
International audienceA high-precision measurement of the$^{131}$Cs→$^{131}$Xe ground-to-ground-stat...
The study of nuclear electron capture (EC) offers an exciting alternative for the determination of t...
The Q-value for the neutrinoless double electron capture on 102Pd, Qϵϵ(102Pd), is determined as the ...
A joint effort of cryogenic microcalorimetry (CM) and high-precision Penning-trap mass spectrometry ...
The first direct determination of the ground-state–to–ground-state Q values of the β− decay 76As→76S...
The ECHo Collaboration (Electron Capture 163Ho aims to investigate the calorimetric spectrum followi...
Direct determination of the electron neutrino m(νe) and anti-neutrino mass m(νe) can be obtained b...
The ECHo Collaboration (Electron Capture 163Ho aims to investigate the calorimetric spectrum followi...
The atomic mass difference of 163Ho and 163Dy has been directly measured with the Penning-trap mass ...
Three decades ago, the measurement of the electron neutrino mass in atomic electron capture (EC) exp...
We report the first direct determination of the ground-state to ground-state electron-capture Q valu...
Within the framework of an extensive programme devoted to the search for alternative candidates for ...
International audienceWithin the framework of an extensive programme devoted to the search for alter...
Within the framework of an extensive programme devoted to the search for alternative candidates for ...
AbstractThe study of nuclear electron capture (EC) offers an exciting alternative for the determinat...
International audienceA high-precision measurement of the$^{131}$Cs→$^{131}$Xe ground-to-ground-stat...
The study of nuclear electron capture (EC) offers an exciting alternative for the determination of t...
The Q-value for the neutrinoless double electron capture on 102Pd, Qϵϵ(102Pd), is determined as the ...
A joint effort of cryogenic microcalorimetry (CM) and high-precision Penning-trap mass spectrometry ...
The first direct determination of the ground-state–to–ground-state Q values of the β− decay 76As→76S...
The ECHo Collaboration (Electron Capture 163Ho aims to investigate the calorimetric spectrum followi...
Direct determination of the electron neutrino m(νe) and anti-neutrino mass m(νe) can be obtained b...
The ECHo Collaboration (Electron Capture 163Ho aims to investigate the calorimetric spectrum followi...
The atomic mass difference of 163Ho and 163Dy has been directly measured with the Penning-trap mass ...
Three decades ago, the measurement of the electron neutrino mass in atomic electron capture (EC) exp...
We report the first direct determination of the ground-state to ground-state electron-capture Q valu...