We have used a radio frequency quadrupole decelerator to decelerate antiprotons emerging from the CERN Antiproton Decelerator from MeV- to keV-scale energy, and collected five decelerated pulses in a multiring trap. Some 5 × 106 antiprotons were stacked in this way. Cooling of the trapped antiprotons by a simultaneously trapped electron plasma was studied nondestructively via shifts in plasma mode frequencies. We have also demonstrated the first step in extracting a 10–500 eV antiproton beam from the trap
The stacking of cold antiprotons is currently the only way to accumulate the large numbers of the co...
The stacking of cold antiprotons is currently the only way to accumulate the large numbers of the co...
The stacking of cold antiprotons is currently the only way to accumulate the large numbers of the co...
We have used a radio frequency quadrupole decelerator to decelerate antiprotons emerging from the CE...
We have used a radio frequency quadrupole decelerator to decelerate antiprotons emerging from the CE...
We have used a radio frequency quadrupole decelerator to decelerate antiprotons emerging from the CE...
A new monoenergetic slow antiproton beam facility has recently been installed at the CERN Antiproton...
The development of techniques to decelerate, cool and confine antiprotons in vacuo with an electroma...
Antiproton, the antiparticle of proton, is a unique projectile in the study of atomic collision phys...
For the production of ultraslow antiproton beams, decelerated antiprotons were captured in an electr...
Antiproton, the antiparticle of proton, is a unique projectile in the study of atomic collision phys...
The Antiproton Decelerator (AD) facility of CERN began operation in 1999 to serve experi-ments for s...
Recent progress of ASACUSA (Atomic Spectroscopy And Collisions Using Slow Antiprotons) project, part...
A simplified scheme for the provision of antiprotons at 100 MeV/c based on fast extraction is descri...
A simplified scheme for the provision of antiprotons at 100 MeV/c based on fast extraction is descri...
The stacking of cold antiprotons is currently the only way to accumulate the large numbers of the co...
The stacking of cold antiprotons is currently the only way to accumulate the large numbers of the co...
The stacking of cold antiprotons is currently the only way to accumulate the large numbers of the co...
We have used a radio frequency quadrupole decelerator to decelerate antiprotons emerging from the CE...
We have used a radio frequency quadrupole decelerator to decelerate antiprotons emerging from the CE...
We have used a radio frequency quadrupole decelerator to decelerate antiprotons emerging from the CE...
A new monoenergetic slow antiproton beam facility has recently been installed at the CERN Antiproton...
The development of techniques to decelerate, cool and confine antiprotons in vacuo with an electroma...
Antiproton, the antiparticle of proton, is a unique projectile in the study of atomic collision phys...
For the production of ultraslow antiproton beams, decelerated antiprotons were captured in an electr...
Antiproton, the antiparticle of proton, is a unique projectile in the study of atomic collision phys...
The Antiproton Decelerator (AD) facility of CERN began operation in 1999 to serve experi-ments for s...
Recent progress of ASACUSA (Atomic Spectroscopy And Collisions Using Slow Antiprotons) project, part...
A simplified scheme for the provision of antiprotons at 100 MeV/c based on fast extraction is descri...
A simplified scheme for the provision of antiprotons at 100 MeV/c based on fast extraction is descri...
The stacking of cold antiprotons is currently the only way to accumulate the large numbers of the co...
The stacking of cold antiprotons is currently the only way to accumulate the large numbers of the co...
The stacking of cold antiprotons is currently the only way to accumulate the large numbers of the co...