Detection of extraterrestrial life is an ongoing goal in space exploration, and there is a need for advanced instruments and methods for the detection of signatures of life based on chemical and isotopic composition. Here, we present the first investigation of chemical composition of putative microfossils in natural samples using a miniature laser ablation/ionization time-of-flight mass spectrometer (LMS). The studies were conducted with high lateral (similar to 15 mu m) and vertical (similar to 20-200 nm) resolution. The primary aim of the study was to investigate the instrument performance on micrometer-sized samples both in terms of isotope abundance and element composition. The following objectives had to be achieved: (1) Consider the d...
Microbialites are critical for documenting early life on earth and-possibly elsewhere in the solar s...
Astrobiology greatly relies in cutting-edge analytical techniques to explore life in extreme conditi...
Laser ablation inductively coupled plasma mass spectrometry (LA–ICP–MS) enables spatially resolved q...
The recognition of biosignatures on planetary bodies requires the analysis of the putative microfoss...
In this contribution, we investigated the chemical composition of Precambrian microfossils from the ...
In this contribution, we investigated the chemical composition of Precambrianmicrofossils from the G...
This thesis contributes to the field of in-situ analytical chemistry by further expanding the measu...
The investigation of chemical composition on planetary bodies without significant sample processing ...
The signatures of element isotope fractionation can be used for the indirect identification of extan...
The detection and identification of biosignatures on planetary bodies such as Mars is extremely chal...
The identification of extraterrestrial life is one the most exciting and challenging endeavors in sp...
Techniques enabling in situ elemental and mineralogical analysis on extraterrestrial planets are str...
noneProgramma di finanziamento: H2020Analytical methods to distinguishing biotic from abiotic featur...
The performance of a laser ablation mass analyser designed for in-situ exploration of the chemical c...
In this contribution, we present results of non-linear dimensionality reduction and classification o...
Microbialites are critical for documenting early life on earth and-possibly elsewhere in the solar s...
Astrobiology greatly relies in cutting-edge analytical techniques to explore life in extreme conditi...
Laser ablation inductively coupled plasma mass spectrometry (LA–ICP–MS) enables spatially resolved q...
The recognition of biosignatures on planetary bodies requires the analysis of the putative microfoss...
In this contribution, we investigated the chemical composition of Precambrian microfossils from the ...
In this contribution, we investigated the chemical composition of Precambrianmicrofossils from the G...
This thesis contributes to the field of in-situ analytical chemistry by further expanding the measu...
The investigation of chemical composition on planetary bodies without significant sample processing ...
The signatures of element isotope fractionation can be used for the indirect identification of extan...
The detection and identification of biosignatures on planetary bodies such as Mars is extremely chal...
The identification of extraterrestrial life is one the most exciting and challenging endeavors in sp...
Techniques enabling in situ elemental and mineralogical analysis on extraterrestrial planets are str...
noneProgramma di finanziamento: H2020Analytical methods to distinguishing biotic from abiotic featur...
The performance of a laser ablation mass analyser designed for in-situ exploration of the chemical c...
In this contribution, we present results of non-linear dimensionality reduction and classification o...
Microbialites are critical for documenting early life on earth and-possibly elsewhere in the solar s...
Astrobiology greatly relies in cutting-edge analytical techniques to explore life in extreme conditi...
Laser ablation inductively coupled plasma mass spectrometry (LA–ICP–MS) enables spatially resolved q...