We present the performance characteristics of a time-of-flight secondary ion mass spectrometer designed for 157 nm laser postionization of sputtered neutrals for high sensitivity elemental and isotopic analyses. The instrument was built with the aim of analyzing rare element abundances in micron to submicron samples such as interstellar grains and cometary dust. Relative sensitivity factors have been determined for secondary ion mass spectrometry which show an exponential dependency against the first ionization potential. This allows elemental abundances to be measured with errors below 25% for most major elements. The accuracy for isotope ratios, where isotopes can be resolved from isobaric interferences, is usually limited only by countin...
The identification of extraterrestrial life is one the most exciting and challenging endeavors in sp...
An outstanding feature of mass spectrometry is the possibility of determining exact masses and accur...
The principles of operation and figures of merit of a novel, compact (324 mm × Ø 114 mm; volume appr...
Key performance features of a miniature laser ablation time-of-flight mass spectrometer designed for...
A new generation of time-of-flight mass spectrometers that implement ion sputtering and laser desorp...
The performance of a laser ablation mass analyser designed for in-situ exploration of the chemical c...
Accurate quantification of isotope ratios is critical for both preventing the development of illicit...
An experimental procedure for precise and accurate measurements of isotope abundances by a miniature...
The Lamont—Doherty Geological Observatory (LDGO) Isolab 54 is a double focussing isotope ratio mass ...
Mass spectrometric analysis of elemental and isotopic compositions of several NIST standards is perf...
Solar System exploration is dealing more and more with chemically complex matter, potentially associ...
Laser ablation ionisation time-of-flight mass spectrometry is a versatile technique to obtain highly...
The identification of extraterrestrial life is one the most exciting and challenging endeavors in sp...
An outstanding feature of mass spectrometry is the possibility of determining exact masses and accur...
The principles of operation and figures of merit of a novel, compact (324 mm × Ø 114 mm; volume appr...
Key performance features of a miniature laser ablation time-of-flight mass spectrometer designed for...
A new generation of time-of-flight mass spectrometers that implement ion sputtering and laser desorp...
The performance of a laser ablation mass analyser designed for in-situ exploration of the chemical c...
Accurate quantification of isotope ratios is critical for both preventing the development of illicit...
An experimental procedure for precise and accurate measurements of isotope abundances by a miniature...
The Lamont—Doherty Geological Observatory (LDGO) Isolab 54 is a double focussing isotope ratio mass ...
Mass spectrometric analysis of elemental and isotopic compositions of several NIST standards is perf...
Solar System exploration is dealing more and more with chemically complex matter, potentially associ...
Laser ablation ionisation time-of-flight mass spectrometry is a versatile technique to obtain highly...
The identification of extraterrestrial life is one the most exciting and challenging endeavors in sp...
An outstanding feature of mass spectrometry is the possibility of determining exact masses and accur...
The principles of operation and figures of merit of a novel, compact (324 mm × Ø 114 mm; volume appr...