Penning-trap mass spectrometry (PT-MS) has proved itself a useful tool for exploring neutrino properties. PT-MS can contribute with direct high-precision measurements of atomic mass differences to the determination of the neutrino mass, to revealing the Majorana or Dirac nature of the neutrino, to neutrino oscillometry, and to the search for the existence of keV-sterile neutrinos. The scope of this review is a brief presentation of the major achievements and the future of PT-MS in the field of neutrino physics
A brief review of new results and perspectives in neutrino physics is presented. An emphasis on a se...
The application of Penning traps for mass spectrometry has led to a major step in the mass precision...
The current experimental status of neutrino physics is reviewed. It contains the evidences for a non...
Penning-trap mass spectrometry (PT-MS) has proved itself a useful tool for exploring neutrino proper...
Rapidly developing neutrino physics has found in Penning-trap mass spectrometry a staunch ally in in...
In neutrino physics, a variety of experiments aim for the determination of the neutrino mass by mean...
Penning-trap mass spectrometry in atomic and nuclear physics has become a well-established and relia...
The novel Penning-trap mass spectrometer Pentatrap aims for mass-ratio measurements of highly-charge...
The search for neutrinoless double-electron capture can be a good alternative to the neutrinoless do...
The novel Penning-trap mass spectrometer PENTATRAP aims at mass-ratio determinations of medium-heavy...
The novel five-Penning-trap mass spectrometer Pentatrap is developed at the Max-Planck-Institut für ...
A joint effort of cryogenic microcalorimetry (CM) and high-precision Penning-trap mass spectrometry ...
Nuclear masses are indispensable ingredients in numerous physics applications ranging from nuclear s...
The precise determination of the 3He/3H mass ratio, and hence the tritium β-decay endpoint energy E ...
Since the discovery of nuclear beta decay, nuclear physicists have studied the weak interaction and ...
A brief review of new results and perspectives in neutrino physics is presented. An emphasis on a se...
The application of Penning traps for mass spectrometry has led to a major step in the mass precision...
The current experimental status of neutrino physics is reviewed. It contains the evidences for a non...
Penning-trap mass spectrometry (PT-MS) has proved itself a useful tool for exploring neutrino proper...
Rapidly developing neutrino physics has found in Penning-trap mass spectrometry a staunch ally in in...
In neutrino physics, a variety of experiments aim for the determination of the neutrino mass by mean...
Penning-trap mass spectrometry in atomic and nuclear physics has become a well-established and relia...
The novel Penning-trap mass spectrometer Pentatrap aims for mass-ratio measurements of highly-charge...
The search for neutrinoless double-electron capture can be a good alternative to the neutrinoless do...
The novel Penning-trap mass spectrometer PENTATRAP aims at mass-ratio determinations of medium-heavy...
The novel five-Penning-trap mass spectrometer Pentatrap is developed at the Max-Planck-Institut für ...
A joint effort of cryogenic microcalorimetry (CM) and high-precision Penning-trap mass spectrometry ...
Nuclear masses are indispensable ingredients in numerous physics applications ranging from nuclear s...
The precise determination of the 3He/3H mass ratio, and hence the tritium β-decay endpoint energy E ...
Since the discovery of nuclear beta decay, nuclear physicists have studied the weak interaction and ...
A brief review of new results and perspectives in neutrino physics is presented. An emphasis on a se...
The application of Penning traps for mass spectrometry has led to a major step in the mass precision...
The current experimental status of neutrino physics is reviewed. It contains the evidences for a non...