The standard model of particle physics is both incredibly successful and glaringly incomplete. Among the questions left open is the striking imbalance of matter and antimatter in the observable universe, which inspires experiments to compare the fundamental properties of matter/antimatter conjugates with high precision. Our experiments deal with direct investigations of the fundamental properties of protons and antiprotons, performing spectroscopy in advanced cryogenic Penning trap systems. For instance, we previously compared the proton/antiproton magnetic moments with 1.5 parts per billion fractional precision, which improved upon previous best measurements by a factor of greater than 3,000. Here we report on a new comparison of the proto...
We summarize our recent 1.5 parts per billion measurement of the antiproton magnetic moment using th...
A comparison of the magnetic moments of the proton and the antiproton provides a sensitive test of m...
The riddle of the baryon asymmetry, i.e. the matter antimatter imbalance in the universe can be addr...
The Standard Model (SM) of particle physics is both incredibly successful and glaringly incomplete. ...
The BASE collaboration investigates the fundamental properties of protons and antiprotons, such as c...
The Baryon Antibaryon Symmetry Experiment (BASE-CERN) at CERN’s antiproton decelerator facility is a...
Charge, Parity and Time (CPT) symmetry is known to be one of the most fundamental symmetries of the ...
This thesis describes high precision measurements on the fundamental properties of the antiproton, n...
Our current understanding of the Universe comes, among others, from particle physics and cosmology. ...
Precise comparisons of the fundamental properties of matter-antimatter conjugates provide sensitive ...
Our current understanding of the Universe comes, among others, from particle physics and cosmology. ...
Invariance under the charge, parity, time-reversal (CPT) transformation$^{1}$ is one of the fundamen...
High-precision comparisons of the proton-to-antiproton charge-to-mass ratios provide sensitive tests...
Precision measurements comparing the fundamental properties of conjugate particles and antiparticles...
A search for differences in the charge-to-mass ratio of protons and antiprotons, conducted at unprec...
We summarize our recent 1.5 parts per billion measurement of the antiproton magnetic moment using th...
A comparison of the magnetic moments of the proton and the antiproton provides a sensitive test of m...
The riddle of the baryon asymmetry, i.e. the matter antimatter imbalance in the universe can be addr...
The Standard Model (SM) of particle physics is both incredibly successful and glaringly incomplete. ...
The BASE collaboration investigates the fundamental properties of protons and antiprotons, such as c...
The Baryon Antibaryon Symmetry Experiment (BASE-CERN) at CERN’s antiproton decelerator facility is a...
Charge, Parity and Time (CPT) symmetry is known to be one of the most fundamental symmetries of the ...
This thesis describes high precision measurements on the fundamental properties of the antiproton, n...
Our current understanding of the Universe comes, among others, from particle physics and cosmology. ...
Precise comparisons of the fundamental properties of matter-antimatter conjugates provide sensitive ...
Our current understanding of the Universe comes, among others, from particle physics and cosmology. ...
Invariance under the charge, parity, time-reversal (CPT) transformation$^{1}$ is one of the fundamen...
High-precision comparisons of the proton-to-antiproton charge-to-mass ratios provide sensitive tests...
Precision measurements comparing the fundamental properties of conjugate particles and antiparticles...
A search for differences in the charge-to-mass ratio of protons and antiprotons, conducted at unprec...
We summarize our recent 1.5 parts per billion measurement of the antiproton magnetic moment using th...
A comparison of the magnetic moments of the proton and the antiproton provides a sensitive test of m...
The riddle of the baryon asymmetry, i.e. the matter antimatter imbalance in the universe can be addr...