Precise comparisons of the fundamental properties of matter–antimatter conjugates provide sensitive tests of charge–parity–time (CPT) invariance1, which is an important symmetry that rests on basic assumptions of the standard model of particle physics. Experiments on mesons2, leptons3, 4 and baryons5, 6 have compared different properties of matter–antimatter conjugates with fractional uncertainties at the parts-per-billion level or better. One specific quantity, however, has so far only been known to a fractional uncertainty at the parts-per-million level7, 8: the magnetic moment of the antiproton, . The extraordinary difficulty in measuring with high precision is caused by its intrinsic smallness; for example, it is 660 times smaller than ...
Our current understanding of the Universe comes, among others, from particle physics and cosmology. ...
Our current understanding of the Universe comes, among others, from particle physics and cosmology. ...
Charge, Parity and Time (CPT) symmetry is known to be one of the most fundamental symmetries of the ...
Precise comparisons of the fundamental properties of matter-antimatter conjugates provide sensitive ...
Precise knowledge of the fundamental properties of the proton is essential for our understanding of ...
The standard model of particle physics is both incredibly successful and glaringly incomplete. Among...
Precision measurements comparing the fundamental properties of conjugate particles and antiparticles...
Precise knowledge of the fundamental properties of the proton is essential for our understanding of ...
The antiproton $(\bar{p})$ magnetic moment $\mu \bar{p} = \mu_{\bar{p}} S/(\bar{h}/2)$ is proportion...
A comparison of the magnetic moments of the proton and the antiproton provides a sensitive test of m...
Recent exciting progress in the preparation and manipulation of the motional quantum states of a sin...
The proton magnetic moment in nuclear magnetons is measured to be $\mu_p/\mu_N \equiv g/2 = 2.792\,8...
The Baryon Antibaryon Symmetry Experiment (BASE-CERN) at CERN’s antiproton decelerator facility is a...
The Standard Model (SM) of particle physics is both incredibly successful and glaringly incomplete. ...
We summarize our recent 1.5 parts per billion measurement of the antiproton magnetic moment using th...
Our current understanding of the Universe comes, among others, from particle physics and cosmology. ...
Our current understanding of the Universe comes, among others, from particle physics and cosmology. ...
Charge, Parity and Time (CPT) symmetry is known to be one of the most fundamental symmetries of the ...
Precise comparisons of the fundamental properties of matter-antimatter conjugates provide sensitive ...
Precise knowledge of the fundamental properties of the proton is essential for our understanding of ...
The standard model of particle physics is both incredibly successful and glaringly incomplete. Among...
Precision measurements comparing the fundamental properties of conjugate particles and antiparticles...
Precise knowledge of the fundamental properties of the proton is essential for our understanding of ...
The antiproton $(\bar{p})$ magnetic moment $\mu \bar{p} = \mu_{\bar{p}} S/(\bar{h}/2)$ is proportion...
A comparison of the magnetic moments of the proton and the antiproton provides a sensitive test of m...
Recent exciting progress in the preparation and manipulation of the motional quantum states of a sin...
The proton magnetic moment in nuclear magnetons is measured to be $\mu_p/\mu_N \equiv g/2 = 2.792\,8...
The Baryon Antibaryon Symmetry Experiment (BASE-CERN) at CERN’s antiproton decelerator facility is a...
The Standard Model (SM) of particle physics is both incredibly successful and glaringly incomplete. ...
We summarize our recent 1.5 parts per billion measurement of the antiproton magnetic moment using th...
Our current understanding of the Universe comes, among others, from particle physics and cosmology. ...
Our current understanding of the Universe comes, among others, from particle physics and cosmology. ...
Charge, Parity and Time (CPT) symmetry is known to be one of the most fundamental symmetries of the ...