Techniques enabling in situ elemental and mineralogical analysis on extraterrestrial planets are strongly required for upcoming missions and are being continuously developed. There is ample need for quantitative and high-sensitivity analysis of elemental as well as isotopic composition of heterogeneous materials. Here we present in situ spatial and depth elemental profiles of a heterogeneous rock sample on a depth-scale of nanometres using a miniaturized laser ablation mass spectrometer (LMS) designed for planetary space missions. We show that the LMS spectra alone could provide highly detailed compositional, three-dimensional information and oxidation properties of a natural, heterogeneous rock sample. We also show that a combination of th...
The study has been conducted on two samples of the iron meteorite Dronino in the framework of a camp...
One of the most fundamental pieces of information about any planetary body is the elemental and mine...
In this paper we discuss a novel instrument, currently under development at Honeybee Robotics with S...
The performance of a laser ablation mass analyser designed for in-situ exploration of the chemical c...
We measured the elemental composition on a sample of Allende meteorite with a miniature laser ablati...
The investigation of chemical composition on planetary bodies without significant sample processing ...
International audienceOver the next few decades, top-level planetary mission objectives will pivot t...
Detection of extraterrestrial life is an ongoing goal in space exploration, and there is a need for ...
Laser ablation inductively coupled plasma mass spectrometry (LA–ICP–MS) enables spatially resolved q...
We present a Laser Ablation Ionization Mass Spectrometer (LIMS) for the sensitive, chemical an...
LIBS and Raman spectroscopy have a high potential for in-situ geochemical and mineralogical analyses...
Laser‐induced breakdown spectroscopy (LIBS) and Raman spectroscopy have a high potential for in situ...
In planetary exploration, in situ absolute geochronology is an important measurement. Thus far, on M...
Quantification of mineral proportions in rocks and soils by Raman spectroscopy on a planetary surfac...
In this contribution, we investigated the chemical composition of Precambrian microfossils from the ...
The study has been conducted on two samples of the iron meteorite Dronino in the framework of a camp...
One of the most fundamental pieces of information about any planetary body is the elemental and mine...
In this paper we discuss a novel instrument, currently under development at Honeybee Robotics with S...
The performance of a laser ablation mass analyser designed for in-situ exploration of the chemical c...
We measured the elemental composition on a sample of Allende meteorite with a miniature laser ablati...
The investigation of chemical composition on planetary bodies without significant sample processing ...
International audienceOver the next few decades, top-level planetary mission objectives will pivot t...
Detection of extraterrestrial life is an ongoing goal in space exploration, and there is a need for ...
Laser ablation inductively coupled plasma mass spectrometry (LA–ICP–MS) enables spatially resolved q...
We present a Laser Ablation Ionization Mass Spectrometer (LIMS) for the sensitive, chemical an...
LIBS and Raman spectroscopy have a high potential for in-situ geochemical and mineralogical analyses...
Laser‐induced breakdown spectroscopy (LIBS) and Raman spectroscopy have a high potential for in situ...
In planetary exploration, in situ absolute geochronology is an important measurement. Thus far, on M...
Quantification of mineral proportions in rocks and soils by Raman spectroscopy on a planetary surfac...
In this contribution, we investigated the chemical composition of Precambrian microfossils from the ...
The study has been conducted on two samples of the iron meteorite Dronino in the framework of a camp...
One of the most fundamental pieces of information about any planetary body is the elemental and mine...
In this paper we discuss a novel instrument, currently under development at Honeybee Robotics with S...