Recent exciting progress in the preparation and manipulation of the motional quantum states of a single trapped proton enabled the first direct detection of the particle's spin state. Based on this success the proton magnetic moment μp was measured with ppm precision in a Penning trap with a superimposed magnetic field inhomogeneity. An improvement by an additional factor of 1000 in precision is possible by application of the so-called double Penning trap technique. In a recent paper we reported the first demonstration of this method with a single trapped proton, which is a major step towards the first direct high-precision measurement of μp. The techniques required for the proton can be directly applied to measure the antiproton magnetic m...
The BASE collaboration performed the most precise measurement of the proton magnetic moment. By appl...
The BASE collaboration performed the most precise measurement of the proton magnetic moment. By appl...
The Baryon Antibaryon Symmetry Experiment (BASE) aims at performing a stringent test of the combined...
Recent exciting progress in the preparation and manipulation of the motional quantum states of a sin...
The recent observation of single spins flips with a single proton in a Penning trap opens the way to...
One of the fundamental properties of the proton is its magnetic moment, µp. So far µp has been measu...
A comparison of the magnetic moments of the proton and the antiproton provides a sensitive test of m...
Spin flips of a single proton were driven in a Penning trap with a homogeneous magnetic field. For t...
AbstractSpin flips of a single proton were driven in a Penning trap with a homogeneous magnetic fiel...
Precise knowledge of the fundamental properties of the proton is essential for our understanding of ...
Spin flips of a single proton were driven in a Penning trap with a homogeneous magnetic field. For t...
The antiproton $(\bar{p})$ magnetic moment $\mu \bar{p} = \mu_{\bar{p}} S/(\bar{h}/2)$ is proportion...
The proton magnetic moment in nuclear magnetons is measured to be $\mu_p/\mu_N \equiv g/2 = 2.792\,8...
We summarize our recent 1.5 parts per billion measurement of the antiproton magnetic moment using th...
Precise knowledge of the fundamental properties of the proton is essential for our understanding of ...
The BASE collaboration performed the most precise measurement of the proton magnetic moment. By appl...
The BASE collaboration performed the most precise measurement of the proton magnetic moment. By appl...
The Baryon Antibaryon Symmetry Experiment (BASE) aims at performing a stringent test of the combined...
Recent exciting progress in the preparation and manipulation of the motional quantum states of a sin...
The recent observation of single spins flips with a single proton in a Penning trap opens the way to...
One of the fundamental properties of the proton is its magnetic moment, µp. So far µp has been measu...
A comparison of the magnetic moments of the proton and the antiproton provides a sensitive test of m...
Spin flips of a single proton were driven in a Penning trap with a homogeneous magnetic field. For t...
AbstractSpin flips of a single proton were driven in a Penning trap with a homogeneous magnetic fiel...
Precise knowledge of the fundamental properties of the proton is essential for our understanding of ...
Spin flips of a single proton were driven in a Penning trap with a homogeneous magnetic field. For t...
The antiproton $(\bar{p})$ magnetic moment $\mu \bar{p} = \mu_{\bar{p}} S/(\bar{h}/2)$ is proportion...
The proton magnetic moment in nuclear magnetons is measured to be $\mu_p/\mu_N \equiv g/2 = 2.792\,8...
We summarize our recent 1.5 parts per billion measurement of the antiproton magnetic moment using th...
Precise knowledge of the fundamental properties of the proton is essential for our understanding of ...
The BASE collaboration performed the most precise measurement of the proton magnetic moment. By appl...
The BASE collaboration performed the most precise measurement of the proton magnetic moment. By appl...
The Baryon Antibaryon Symmetry Experiment (BASE) aims at performing a stringent test of the combined...