Production of antihydrogen atoms by mixing antiprotons with a cold, confined, positron plasma depends critically on parameters such as the plasma density and temperature.We discuss nondestructive measurements, based on a novel, real-time analysis of excited, low-order plasma modes, that provide comprehensive characterization of the positron plasma in the ATHENA antihydrogen apparatus. The plasma length, radius, density, and total particle number are obtained. Measurement and control of plasma temperature variations, and the application to antihydrogen production experiments are discussed
This dissertation focuses on three ideas useful to the nonneutral plasma experiment atUC Berkeley an...
The creation of cold antihydrogen by the ATHENA and ATRAP collaborations, working at CERN's unique A...
The creation of cold antihydrogen by the ATHENA and ATRAP collaborations, working at CERN’s unique A...
Production of antihydrogen atoms by mixing antiprotons with a cold, confined, positron plasma depend...
Production of antihydrogen atoms by mixing antiprotons with a cold, confined, positron plasma depend...
An observation of a clear dependence of antihydrogen production on positron plasma shapes is reporte...
In the ATHENA experiment, which has recently produced and detected cold antihydrogen, the antiatoms ...
We demonstrate temporally controlled modulation of cold antihydrogen production by periodic RF heati...
Production of cold antihydrogen in electromagnetic traps by mixing of antiprotons and positrons has...
Cold antihydrogen atoms were produced by mixing cold samples of antiprotons and positrons. The tempe...
Antihydrogen is now routinely produced at CERN by overlapping clouds of positrons and antiprotons. T...
The first phase of the ATHENA (Antihydrogen Apparatus) experiment is devoted to the study of cold an...
AbstractCold antihydrogen atoms were produced by mixing cold samples of antiprotons and positrons. T...
The ATHENA (AnTiHydrogEN Apparatus) experiment has the goal of producing slow antihydrogen atoms and...
Cold antihydrogen atoms were produced by mixing cold samples of antiprotons and positrons. The tempe...
This dissertation focuses on three ideas useful to the nonneutral plasma experiment atUC Berkeley an...
The creation of cold antihydrogen by the ATHENA and ATRAP collaborations, working at CERN's unique A...
The creation of cold antihydrogen by the ATHENA and ATRAP collaborations, working at CERN’s unique A...
Production of antihydrogen atoms by mixing antiprotons with a cold, confined, positron plasma depend...
Production of antihydrogen atoms by mixing antiprotons with a cold, confined, positron plasma depend...
An observation of a clear dependence of antihydrogen production on positron plasma shapes is reporte...
In the ATHENA experiment, which has recently produced and detected cold antihydrogen, the antiatoms ...
We demonstrate temporally controlled modulation of cold antihydrogen production by periodic RF heati...
Production of cold antihydrogen in electromagnetic traps by mixing of antiprotons and positrons has...
Cold antihydrogen atoms were produced by mixing cold samples of antiprotons and positrons. The tempe...
Antihydrogen is now routinely produced at CERN by overlapping clouds of positrons and antiprotons. T...
The first phase of the ATHENA (Antihydrogen Apparatus) experiment is devoted to the study of cold an...
AbstractCold antihydrogen atoms were produced by mixing cold samples of antiprotons and positrons. T...
The ATHENA (AnTiHydrogEN Apparatus) experiment has the goal of producing slow antihydrogen atoms and...
Cold antihydrogen atoms were produced by mixing cold samples of antiprotons and positrons. The tempe...
This dissertation focuses on three ideas useful to the nonneutral plasma experiment atUC Berkeley an...
The creation of cold antihydrogen by the ATHENA and ATRAP collaborations, working at CERN's unique A...
The creation of cold antihydrogen by the ATHENA and ATRAP collaborations, working at CERN’s unique A...