The purpose of the micro ion source program was to enhance the performance of thermal ionization mass spectrometry (TIMS) for various actinides and fission products. The proposal hypothesized that when ions are created at the ion optic center of the mass spectrometer, ion transmission is significantly increased and the resulting ion beam is more sharply focused. Computer modeling demonstrated this logic. In order to prove this hypothesis it was first necessary to understand the chemistry and physics governing the particular ion production process that concentrates the emission of ions into a small area. This has been achieved for uranium and technetium, as was shown in the original proposal and the improvement of both the beam transmission ...
After upgrading IRMM's mass spectrometric capabilities for certification measurements for uranium an...
The purpose of the Transuranics Program is to develop separation processes for the transuranic eleme...
A new technique is being developed for monitoring low-level airborne plutonium on a real-time basis....
To increase understanding of the resin bead ion source for mass spectrometry, lanthanide and actinid...
The design of a prototype thermal ionization cavity (TIC) source attached to the mass analyser of a ...
This contribution describes a new sample loading method for Thermal Ionization Mass Spectrometry (TI...
Thermal Ionization Mass Spectrometry (TIMS) is a widely used mass spectrometric technique for the de...
Research on thorium as an energy source began in 1940 under the direction of Glenn Seaborg at the Un...
Radioactive particles from three locations were investigated for elemental composition, oxidation st...
Thermal ionization mass spectrometry (TIMS) is a well established instrumental technique for providi...
Development of dissolution techniques for difficult-to-dissolve nuclear materials, development of me...
An effective ion catcher is all important part of a radioactive beam Facility that is based on in-fl...
Dit rapport beschrijft de laatste ontwikkelingen in de radiochemische bepaling van plutonium in mons...
Characterization and sintering results indicate significant differences between UO/sub 2/--35 wt% Pu...
Work continues on the development of dissolution techniques for difficult-to-dissolve nuclear materi...
After upgrading IRMM's mass spectrometric capabilities for certification measurements for uranium an...
The purpose of the Transuranics Program is to develop separation processes for the transuranic eleme...
A new technique is being developed for monitoring low-level airborne plutonium on a real-time basis....
To increase understanding of the resin bead ion source for mass spectrometry, lanthanide and actinid...
The design of a prototype thermal ionization cavity (TIC) source attached to the mass analyser of a ...
This contribution describes a new sample loading method for Thermal Ionization Mass Spectrometry (TI...
Thermal Ionization Mass Spectrometry (TIMS) is a widely used mass spectrometric technique for the de...
Research on thorium as an energy source began in 1940 under the direction of Glenn Seaborg at the Un...
Radioactive particles from three locations were investigated for elemental composition, oxidation st...
Thermal ionization mass spectrometry (TIMS) is a well established instrumental technique for providi...
Development of dissolution techniques for difficult-to-dissolve nuclear materials, development of me...
An effective ion catcher is all important part of a radioactive beam Facility that is based on in-fl...
Dit rapport beschrijft de laatste ontwikkelingen in de radiochemische bepaling van plutonium in mons...
Characterization and sintering results indicate significant differences between UO/sub 2/--35 wt% Pu...
Work continues on the development of dissolution techniques for difficult-to-dissolve nuclear materi...
After upgrading IRMM's mass spectrometric capabilities for certification measurements for uranium an...
The purpose of the Transuranics Program is to develop separation processes for the transuranic eleme...
A new technique is being developed for monitoring low-level airborne plutonium on a real-time basis....