Measurements with a one-electron quantum cyclotron determine the electron magnetic moment, given by $g/2 = 1.001\,159\,652\,180\,73\,(28)\,[0.28~\textrm{ppt}]$, and the fine structure constant, $\alpha^{-1}=137.035\,999\,084\,(51)\,[0.37~\textrm{ppb}]$. Brief announcements of these measurements are supplemented here with a more complete description of the one-electron quantum cyclotron and the new measurement methods, a discussion of the cavity control of the radiation field, a summary of the analysis of the measurements, and a fuller discussion of the uncertainties
Highly charged ions represent environments that allow to study precisely one or more bound electrons...
International audienceThe fine-structure constant α is a crucial parameter of the quantum electrodyn...
We analyze the leading and higher-order quantum electrodynamic corrections to the energy levels for ...
A single electron in a quantum cyclotron provides the most precise measurement of the electron magne...
A single electron in a quantum cyclotron provides the most precise measurement of the electron magne...
The electron magnetic moment,$-\mu/\mu_B = g/2 = 1.001 \, 159 \, 652 \, 180 \, 59 \, (13) \, [0.13\,...
The electron and positron magnetic moments are the most precise prediction of the standard model of ...
The proton magnetic moment in nuclear magnetons is measured to be $\mu_p/\mu_N \equiv g/2 = 2.792\,8...
The quest for the value of the electron’s atomic mass has been the subject of continuing efforts ove...
The quantum non-demolition measurement of the cyclotron excitations of an electron confined in a Pen...
It has been understood since 1897 that accelerating charges must emit electromagnetic radiation. Alt...
The antiproton $(\bar{p})$ magnetic moment $\mu \bar{p} = \mu_{\bar{p}} S/(\bar{h}/2)$ is proportion...
Highly charged ions represent environments that allow to study precisely one or more bound electrons...
Zero-point confinement in a suitable trap is briefly discussed as a quantum-mechanical equivalent of...
The anomalous magnetic moment of the electron a e measured in a Penning trap occupies a uniq...
Highly charged ions represent environments that allow to study precisely one or more bound electrons...
International audienceThe fine-structure constant α is a crucial parameter of the quantum electrodyn...
We analyze the leading and higher-order quantum electrodynamic corrections to the energy levels for ...
A single electron in a quantum cyclotron provides the most precise measurement of the electron magne...
A single electron in a quantum cyclotron provides the most precise measurement of the electron magne...
The electron magnetic moment,$-\mu/\mu_B = g/2 = 1.001 \, 159 \, 652 \, 180 \, 59 \, (13) \, [0.13\,...
The electron and positron magnetic moments are the most precise prediction of the standard model of ...
The proton magnetic moment in nuclear magnetons is measured to be $\mu_p/\mu_N \equiv g/2 = 2.792\,8...
The quest for the value of the electron’s atomic mass has been the subject of continuing efforts ove...
The quantum non-demolition measurement of the cyclotron excitations of an electron confined in a Pen...
It has been understood since 1897 that accelerating charges must emit electromagnetic radiation. Alt...
The antiproton $(\bar{p})$ magnetic moment $\mu \bar{p} = \mu_{\bar{p}} S/(\bar{h}/2)$ is proportion...
Highly charged ions represent environments that allow to study precisely one or more bound electrons...
Zero-point confinement in a suitable trap is briefly discussed as a quantum-mechanical equivalent of...
The anomalous magnetic moment of the electron a e measured in a Penning trap occupies a uniq...
Highly charged ions represent environments that allow to study precisely one or more bound electrons...
International audienceThe fine-structure constant α is a crucial parameter of the quantum electrodyn...
We analyze the leading and higher-order quantum electrodynamic corrections to the energy levels for ...