AbstractCold antihydrogen atoms were produced by mixing cold samples of antiprotons and positrons. The temperature of the positron plasma was increased by controlled radio-frequency (RF) heating, and the antihydrogen production was measured. Formation is observed to decrease with increased temperature but a simple power law scaling is not observed. Significant production is still present at room temperature
Here we demonstrate the production of antihydrogen atoms at very low energy by mixing trapped antip...
We demonstrate cooling of 10^4 antiprotons in a dense, cold plasma of ∼10^8 positrons, confined in a...
We demonstrate cooling of 10^4 antiprotons in a dense, cold plasma of ∼10^8 positrons, confined in a...
Cold antihydrogen atoms were produced by mixing cold samples of antiprotons and positrons. The tempe...
Cold antihydrogen atoms were produced by mixing cold samples of antiprotons and positrons. The tempe...
AbstractCold antihydrogen atoms were produced by mixing cold samples of antiprotons and positrons. T...
Production of cold antihydrogen in electromagnetic traps by mixing of antiprotons and positrons has...
We demonstrate temporally controlled modulation of cold antihydrogen production by periodic RF heati...
Antihydrogen is now routinely produced at CERN by overlapping clouds of positrons and antiprotons. T...
Cold antihydrogen is produced when antiprotons are repeatedly driven into collisions with cold posit...
Production of antihydrogen atoms by mixing antiprotons with a cold, confined, positron plasma depend...
Antihydrogen is formed when antiprotons are mixed with cold positrons in a nested Penning trap. We ...
Cold antihydrogen atoms are a powerful tool to probe the validity of fundamental physics laws, and i...
Antihydrogen atoms with K or sub-K temperature are a powerful tool to precisely probe the validity o...
Here we demonstrate the production of antihydrogen atoms at very low energy by mixing trapped antip...
We demonstrate cooling of 10^4 antiprotons in a dense, cold plasma of ∼10^8 positrons, confined in a...
We demonstrate cooling of 10^4 antiprotons in a dense, cold plasma of ∼10^8 positrons, confined in a...
Cold antihydrogen atoms were produced by mixing cold samples of antiprotons and positrons. The tempe...
Cold antihydrogen atoms were produced by mixing cold samples of antiprotons and positrons. The tempe...
AbstractCold antihydrogen atoms were produced by mixing cold samples of antiprotons and positrons. T...
Production of cold antihydrogen in electromagnetic traps by mixing of antiprotons and positrons has...
We demonstrate temporally controlled modulation of cold antihydrogen production by periodic RF heati...
Antihydrogen is now routinely produced at CERN by overlapping clouds of positrons and antiprotons. T...
Cold antihydrogen is produced when antiprotons are repeatedly driven into collisions with cold posit...
Production of antihydrogen atoms by mixing antiprotons with a cold, confined, positron plasma depend...
Antihydrogen is formed when antiprotons are mixed with cold positrons in a nested Penning trap. We ...
Cold antihydrogen atoms are a powerful tool to probe the validity of fundamental physics laws, and i...
Antihydrogen atoms with K or sub-K temperature are a powerful tool to precisely probe the validity o...
Here we demonstrate the production of antihydrogen atoms at very low energy by mixing trapped antip...
We demonstrate cooling of 10^4 antiprotons in a dense, cold plasma of ∼10^8 positrons, confined in a...
We demonstrate cooling of 10^4 antiprotons in a dense, cold plasma of ∼10^8 positrons, confined in a...