The performance of a laser ablation mass analyser designed for in-situ exploration of the chemical composition of planetary surfaces has been investigated. The instrument measures the elemental and isotopic composition of raw solid materials with high spatial resolution. The initial studies were performed on NIST standard materials using IR laser irradiance (< 1 GW cm−2) at which a high temporal stability of ion formation and sufficiently low sample consumption was achieved. Measurements of highly averaged spectra could be performed with typical mass resolution of m/Δm ≈ 600 in an effective dynamic range spanning seven decades. Sensitive detection of several trace elements can be achieved at the ~ ppm level and lower. The isotopic compositi...
Accumulation of spectra is a common approach for improvement of the signalto‐ noise ratio (SNR) in ...
Interrogation of the chemical composition of rocky planets provides a deeper understanding of the hi...
The capabilities and limitations of nanosecond laser ablation ICP-mass spectrometry for bulk and spa...
Key performance features of a miniature laser ablation time-of-flight mass spectrometer designed for...
An experimental procedure for precise and accurate measurements of isotope abundances by a miniature...
We measured the elemental composition on a sample of Allende meteorite with a miniature laser ablati...
We present a Laser Ablation Ionization Mass Spectrometer (LIMS) for the sensitive, chemical an...
Techniques enabling in situ elemental and mineralogical analysis on extraterrestrial planets are str...
One of the most fundamental pieces of information about any planetary body is the elemental and mine...
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...
International audienceOver the next few decades, top-level planetary mission objectives will pivot t...
International audienceRationale: The investigation of cryogenic planetary environments as potential ...
Accumulation of spectra is a common approach for improvement of the signalto‐ noise ratio (SNR) in ...
Interrogation of the chemical composition of rocky planets provides a deeper understanding of the hi...
The capabilities and limitations of nanosecond laser ablation ICP-mass spectrometry for bulk and spa...
Key performance features of a miniature laser ablation time-of-flight mass spectrometer designed for...
An experimental procedure for precise and accurate measurements of isotope abundances by a miniature...
We measured the elemental composition on a sample of Allende meteorite with a miniature laser ablati...
We present a Laser Ablation Ionization Mass Spectrometer (LIMS) for the sensitive, chemical an...
Techniques enabling in situ elemental and mineralogical analysis on extraterrestrial planets are str...
One of the most fundamental pieces of information about any planetary body is the elemental and mine...
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...
International audienceOver the next few decades, top-level planetary mission objectives will pivot t...
International audienceRationale: The investigation of cryogenic planetary environments as potential ...
Accumulation of spectra is a common approach for improvement of the signalto‐ noise ratio (SNR) in ...
Interrogation of the chemical composition of rocky planets provides a deeper understanding of the hi...
The capabilities and limitations of nanosecond laser ablation ICP-mass spectrometry for bulk and spa...