The aim of the ASACUSA-CUSP experiment at CERN is to produce a cold, polarised antihydrogen beam and perform a high precision measurement of the ground-state hyperfine transition frequency of the antihydrogen atom and compare it with that of the hydrogen atom using the same spectroscopic beam line. Towards this goal a significant step was successfully accomplished: synthesised antihydrogen atoms have been produced in a CUSP magnetic configuration and detected at the end of our spectrometer beam line in 2012 [1]. During a long shut down at CERN the ASACUSA-CUSP experiment had been renewed by introducing a new double-CUSP magnetic configuration and a new semi-cylindrical tracking detector (AMT) [2], and by improving the transport feature of l...
We report here the first successful synthesis of cold antihydrogen atoms employing a cusp trap, whic...
We report here the first successful synthesis of cold antihydrogen atoms employing a cusp trap, which...
We report the progress of the $\bar{\text{H}}$ beam production experiment and recent developments of...
The aim of the ASACUSA-CUSP experiment at CERN is to produce a cold, polarised antihydrogen beam and...
The ASACUSA CUSP experiment plans a high precision spectroscopy of the ground-state hyperfine splitt...
ASACUSA collaboration has been making a path to realize high precision microwave spectroscopy of gro...
The ASACUSA collaboration has developed a cusp trap scheme to realize an in-flight high precision mi...
In order to test CPT symmetry between antihydrogen and its counterpart hydrogen, the ASACUSA collabo...
The goal of the ASACUSA-CUSP collaboration at the Antiproton Decelerator of CERN is to measure the g...
We report here the first successful synthesis of cold antihydrogen atoms employing a cusp trap, whic...
We report here the first successful synthesis of cold antihydrogen atoms employing a cusp trap, which...
We report the progress of the $\bar{\text{H}}$ beam production experiment and recent developments of...
The aim of the ASACUSA-CUSP experiment at CERN is to produce a cold, polarised antihydrogen beam and...
The ASACUSA CUSP experiment plans a high precision spectroscopy of the ground-state hyperfine splitt...
ASACUSA collaboration has been making a path to realize high precision microwave spectroscopy of gro...
The ASACUSA collaboration has developed a cusp trap scheme to realize an in-flight high precision mi...
In order to test CPT symmetry between antihydrogen and its counterpart hydrogen, the ASACUSA collabo...
The goal of the ASACUSA-CUSP collaboration at the Antiproton Decelerator of CERN is to measure the g...
We report here the first successful synthesis of cold antihydrogen atoms employing a cusp trap, whic...
We report here the first successful synthesis of cold antihydrogen atoms employing a cusp trap, which...
We report the progress of the $\bar{\text{H}}$ beam production experiment and recent developments of...