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  3. Life Detection Beyond Earth: Laser-Based Mass Spectrometry for Organics Detection on Solar System Objects.

Life Detection Beyond Earth: Laser-Based Mass Spectrometry for Organics Detection on Solar System Objects.

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DOI
10.48620/86801
Publisher DOI
10.2533/chimia.2025.70
PubMed ID
40026095
Abstract
The detection and identification of the building blocks of life, from amino acids to more complex molecules such as certain lipids, is a crucial but highly challenging task for current and future space exploration missions in our Solar System. To date, Gas Chromatography Mass Spectrometry has been the main technology applied. Although it has shown excellent performance in laboratory research, it has not yet been able to provide a conclusive answer regarding the presence or absence of a signature of life, extinct or extant, in space exploration. In this contribution we present the current measurement capabilities of our space prototype laser-based mass spectrometer for organics detection. The developed mass spectrometer currently allows the detection and identification of small organic molecules, such as amino acids and nucleobases, at sample concentrations at the level of femtomole mm-2, using the same measurement protocol. The latter is highly relevant to space exploration, since with the instrumentation in use so far only one class of organics can be measured with one instrument configuration.
Date Issued
2025-02-26
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
Subjects
LIMS
•
Laser desorption mass spectrometry
•
Life detection
•
Organics
•
Space exploration
Language(s)
en
Author(s)
Riedo, Andreas  
Physics Institute, Space Research and Planetary Sciences  
Space Research and Planetology Physics - Labs Planet in Situ  
Physics Institute  
Boeren, Nikita J.  
Space Research and Planetology Physics - Labs Planet in Situ  
Physics Institute  
Keresztes Schmidt, Peter  
Space Research and Planetology Physics - Labs Planet in Situ  
Physics Institute, Space Research and Planetary Sciences  
Tulej, Marek  
Physics Institute, Space Research and Planetary Sciences  
Wurz, Peter  
Space Research and Planetology Physics - Labs Planet in Situ  
Physics Institute, Space Research and Planetary Sciences  
Additional Credits
Space Research and Planetology Physics - Labs Planet in Situ  
Physics Institute, Space Research and Planetary Sciences  
Physics Institute  
Journal
CHIMIA
Publisher
Swiss Chemical Society
ISSN
0009-4293
Access(Rights)
open.access
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