An effective ion catcher is all important part of a radioactive beam Facility that is based on in-flight production. The catcher stops fast radioactive products and emits them as singly charged slow ions. Current ion catchers are based on stopping in He and H-2 gas. However, with increasing intensity of the secondary beam the amount of ion-electron pairs created eventually prevents the electromagnetic extraction of the radioactive ions front the gas cell. In contrast, such limitations are not present in thermal ionizers used with the ISOL production technique. Therefore, at least for alkaline and alkaline earth elements, a thermal ionizer should then be preferred. An important use of the TRI mu P facility will be for precision measurements ...
International audienceDevelopments of new radioactive beams and thus of new target-ion-sources (TIS)...
Developments of new setups for radioactive ion beam production by the isotope-separator-on-line (ISO...
The TRIμP facility, under construction at KVI, requires the production and separation of short-lived...
An effective ion catcher is all important part of a radioactive beam Facility that is based on in-fl...
The structures for the TRI mu P facility have been completed and commissioned. At the facility radio...
The structures for the TRI mu P facility have been completed and commissioned. At the facility radio...
Radioactive isotopes produced by the in-flight method are converted into low-energy ions with a ther...
The status of the TRI mu P facility at KVI is reviewed. Recent results on ion catcher devices are de...
International audienceIn the framework of the production of radioactive alkali ion beams by the isot...
The TRI mu P facility, under construction at KVI, requires the production and separation of short-li...
International audienceDevelopments of new radioactive beams and thus of new target-ion-sources (TIS)...
Developments of new setups for radioactive ion beam production by the isotope-separator-on-line (ISO...
The TRIμP facility, under construction at KVI, requires the production and separation of short-lived...
An effective ion catcher is all important part of a radioactive beam Facility that is based on in-fl...
The structures for the TRI mu P facility have been completed and commissioned. At the facility radio...
The structures for the TRI mu P facility have been completed and commissioned. At the facility radio...
Radioactive isotopes produced by the in-flight method are converted into low-energy ions with a ther...
The status of the TRI mu P facility at KVI is reviewed. Recent results on ion catcher devices are de...
International audienceIn the framework of the production of radioactive alkali ion beams by the isot...
The TRI mu P facility, under construction at KVI, requires the production and separation of short-li...
International audienceDevelopments of new radioactive beams and thus of new target-ion-sources (TIS)...
Developments of new setups for radioactive ion beam production by the isotope-separator-on-line (ISO...
The TRIμP facility, under construction at KVI, requires the production and separation of short-lived...