For direct cross-section measurements in nuclear astrophysics, in addition to suitable ion beams and detectors, also highly pure and stable targets are needed. Here, using a gas jet as a target offers an attractive approach that combines high stability even under significant beam load with excellent purity and high localisation. Such a target is currently under construction at the Felsenkeller underground ion accelerator lab for nuclear astrophysics in Dresden, Germany. The target thickness will be measured by optical interferometry, allowing an in-situ thickness determination including also beam-induced effects. The contribution reports on the status of this new system and outlines possible applications in nuclear astrophysics.Comment: Sub...
The experimental study of nuclear reactions of astrophysical interest is greatly facilitated by a lo...
Progress on the Michigan ultra‐cold proton‐spin‐polarized atomic‐hydrogen Jet target is presented. W...
The GSI UNILAC will serve as part of an injector system for the future FAIR facility, currently unde...
For direct cross section measurements in nuclear astrophysics, in addition to suitable ion beams and...
To take full advantage of advanced exotic beam facilities, target technology must also be advanced. ...
AbstractA high-density supersonic gas-jet target named JENSA (Jet Experiments in Nuclear Structure a...
Low-background experiments with stable ion beams are an important tool for putting the model of stel...
Low-background experiments with stable ion beams are an important tool for putting the model of stel...
This research was sponsored by the National Science Foundation Grant NSF PHY-931478
ABSTRACT We argue the importance of installing at LEAR an internal gas jet target together with a po...
Resonant laser ionization and spectroscopy are widely used techniques at radioactive ion beam facili...
Gas jets emitted from an ion guide have been studied as a function of nozzle type and gas cell-to-ba...
Favored by the low background in underground laboratories, low-background accelerator-based experime...
Ions and in particular antiprotons, stored and cooled at low energies in a storage ring or at rest i...
C-12(alpha, gamma)O-16 cross section plays a key-role in the stellar evolution and nucleosynthesis o...
The experimental study of nuclear reactions of astrophysical interest is greatly facilitated by a lo...
Progress on the Michigan ultra‐cold proton‐spin‐polarized atomic‐hydrogen Jet target is presented. W...
The GSI UNILAC will serve as part of an injector system for the future FAIR facility, currently unde...
For direct cross section measurements in nuclear astrophysics, in addition to suitable ion beams and...
To take full advantage of advanced exotic beam facilities, target technology must also be advanced. ...
AbstractA high-density supersonic gas-jet target named JENSA (Jet Experiments in Nuclear Structure a...
Low-background experiments with stable ion beams are an important tool for putting the model of stel...
Low-background experiments with stable ion beams are an important tool for putting the model of stel...
This research was sponsored by the National Science Foundation Grant NSF PHY-931478
ABSTRACT We argue the importance of installing at LEAR an internal gas jet target together with a po...
Resonant laser ionization and spectroscopy are widely used techniques at radioactive ion beam facili...
Gas jets emitted from an ion guide have been studied as a function of nozzle type and gas cell-to-ba...
Favored by the low background in underground laboratories, low-background accelerator-based experime...
Ions and in particular antiprotons, stored and cooled at low energies in a storage ring or at rest i...
C-12(alpha, gamma)O-16 cross section plays a key-role in the stellar evolution and nucleosynthesis o...
The experimental study of nuclear reactions of astrophysical interest is greatly facilitated by a lo...
Progress on the Michigan ultra‐cold proton‐spin‐polarized atomic‐hydrogen Jet target is presented. W...
The GSI UNILAC will serve as part of an injector system for the future FAIR facility, currently unde...