The High-Energy Storage Ring (HESR) is a part of an upcoming International Facility for Antiproton and Ion Research (FAIR) at GSI in Darmstadt [1]. A key part of a scientific program, along with antiproton physics, will be physics with highly-charged heavy ions. Phase-space cooled beams together with fixed internal target will provide an excellent environment for storage ring experiments at the HESR for the SPARC collaboration [2–4]. Until recently, however, the existing ion optical lattice for the HESR was designed only for the experiments with antiproton beams. The thesis presents a new ion optical mode developed specifically for the operation of the HESR with highly charged heavy ions. The presence of the errors, such as beam momentum ...
The High Energy Storage Ring (HESR) is a part of the future Facility for Antiproton and Ion Research...
A novel Cryogenic Storage Ring CSR is under construction at the Max-Planck- Institut for Nuclear Phy...
Deceleration is required to produce multicharged ion beams in the energy range from few keV to few M...
The High-Energy Storage Ring (HESR) is part of the upcoming Facility for Antiproton and Ion Research...
High energy storage ring (HESR) as a part of the future accelerator facility FAIR (Facility for Anti...
The High Energy Storage Ring (HESR) is part of the future Facility for Antiproton and Ion Research (...
The High Energy Storage Ring (HESR) is part of the upcoming Facility for Antiproton and Ion Research...
The HESR is planned as an antiproton storage ring in the momentum range from 1.5 to 15 GeV/c. An imp...
Methods to counteract trapped ion effects in the High-Energy Storage Ring HESR are studied in the pr...
This thesis deals with beam-dynamics simulations and magnetic measurements for the High-Energy Stora...
This thesis deals with beam-dynamics simulations and magnetic measurements for the High-Energy Stora...
The high-energy storage ring (HESR) of the future International Facility for Antiproton and Ion Rese...
One of the aims of the SPARC collaboration [1] at FAIR is to perform precision atomic physics expe- ...
The High-Energy Storage Ring (HESR) of the future International Facility for Antiproton and Ion Rese...
The problem of ion trapping in the high-energy storage ring HESR is studied in the present report. P...
The High Energy Storage Ring (HESR) is a part of the future Facility for Antiproton and Ion Research...
A novel Cryogenic Storage Ring CSR is under construction at the Max-Planck- Institut for Nuclear Phy...
Deceleration is required to produce multicharged ion beams in the energy range from few keV to few M...
The High-Energy Storage Ring (HESR) is part of the upcoming Facility for Antiproton and Ion Research...
High energy storage ring (HESR) as a part of the future accelerator facility FAIR (Facility for Anti...
The High Energy Storage Ring (HESR) is part of the future Facility for Antiproton and Ion Research (...
The High Energy Storage Ring (HESR) is part of the upcoming Facility for Antiproton and Ion Research...
The HESR is planned as an antiproton storage ring in the momentum range from 1.5 to 15 GeV/c. An imp...
Methods to counteract trapped ion effects in the High-Energy Storage Ring HESR are studied in the pr...
This thesis deals with beam-dynamics simulations and magnetic measurements for the High-Energy Stora...
This thesis deals with beam-dynamics simulations and magnetic measurements for the High-Energy Stora...
The high-energy storage ring (HESR) of the future International Facility for Antiproton and Ion Rese...
One of the aims of the SPARC collaboration [1] at FAIR is to perform precision atomic physics expe- ...
The High-Energy Storage Ring (HESR) of the future International Facility for Antiproton and Ion Rese...
The problem of ion trapping in the high-energy storage ring HESR is studied in the present report. P...
The High Energy Storage Ring (HESR) is a part of the future Facility for Antiproton and Ion Research...
A novel Cryogenic Storage Ring CSR is under construction at the Max-Planck- Institut for Nuclear Phy...
Deceleration is required to produce multicharged ion beams in the energy range from few keV to few M...