Antiproton beams of relatively low energies (below hundreds of MeV) have recently become available. The present article discusses the significance of those beams in the contexts of radiation physics and of atomic and molecular physics. Studies on individual collisions of antiprotons with atoms and molecules are valuable for a better understanding of collisions of protons or electrons, a subject with many applications. An antiproton is unique as\u27 a stable, negative heavy particle without electronic structure, and it provides an excellent opportunity to study atomic collision theory. Comparison of the stopping powers of a material for an antiproton and a proton at the same speed will be the most clearcut approach to the Barkas effect. The ...
We present an optical potential analysis of the antiproton-protoninteractions at low energies. Our o...
Recently, a new project, ASACUSA (atomic spectroscopy and collisions using slow antiprotons), has st...
Lecture 4: Physics with Antimatter at the Antiproton Decelerator The Antiproton Decelerator (AD) is...
Antiproton beams of relatively low energies (below hundreds of MeV) have recently become available. ...
Atomic processes dominate antiproton stopping in matter at nearly all energies of interest. They sig...
Antiproton, the antiparticle of proton, is a unique projectile in the study of atomic collision phys...
The Atomic Spectroscopy And Collisions Using Slow Antiprotons (ASACUSA) project aims at studying col...
By virtue of the highly energetic particles released when they annihilate in matter, antiprotons hav...
Antiproton, the antiparticle of proton, is a unique projectile in the study of atomic collision phys...
The slowing down of energetic ions in materials is determined by the nuclear and electronic stopping...
The atomic spectroscopy and collisions using slow antiprotons (ASACUSA) project aims at studying col...
Low energy antiprotons offer excellent opportunities to study properties of fundamental forces and s...
The development of techniques to decelerate, cool and confine antiprotons in vacuo with an electroma...
One of the striking features of Dirac's theory of the electron was the appearance of solutions to hi...
Ionizing collisions of antiprotons with atoms or molecules at energies between a few keV up to about...
We present an optical potential analysis of the antiproton-protoninteractions at low energies. Our o...
Recently, a new project, ASACUSA (atomic spectroscopy and collisions using slow antiprotons), has st...
Lecture 4: Physics with Antimatter at the Antiproton Decelerator The Antiproton Decelerator (AD) is...
Antiproton beams of relatively low energies (below hundreds of MeV) have recently become available. ...
Atomic processes dominate antiproton stopping in matter at nearly all energies of interest. They sig...
Antiproton, the antiparticle of proton, is a unique projectile in the study of atomic collision phys...
The Atomic Spectroscopy And Collisions Using Slow Antiprotons (ASACUSA) project aims at studying col...
By virtue of the highly energetic particles released when they annihilate in matter, antiprotons hav...
Antiproton, the antiparticle of proton, is a unique projectile in the study of atomic collision phys...
The slowing down of energetic ions in materials is determined by the nuclear and electronic stopping...
The atomic spectroscopy and collisions using slow antiprotons (ASACUSA) project aims at studying col...
Low energy antiprotons offer excellent opportunities to study properties of fundamental forces and s...
The development of techniques to decelerate, cool and confine antiprotons in vacuo with an electroma...
One of the striking features of Dirac's theory of the electron was the appearance of solutions to hi...
Ionizing collisions of antiprotons with atoms or molecules at energies between a few keV up to about...
We present an optical potential analysis of the antiproton-protoninteractions at low energies. Our o...
Recently, a new project, ASACUSA (atomic spectroscopy and collisions using slow antiprotons), has st...
Lecture 4: Physics with Antimatter at the Antiproton Decelerator The Antiproton Decelerator (AD) is...